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55 Commits

Author SHA1 Message Date
Keith Whitwell
027fdb8bbd Merge head into branch 2003-11-24 12:01:39 +00:00
Alan Hourihane
3a7c3b02a3 fixup gamma_render.c 2003-11-21 16:41:14 +00:00
Keith Whitwell
3ec97611d2 Merge head into branch 2003-11-21 15:49:24 +00:00
Keith Whitwell
f2f09abce4 linux-solo compiles as far as the gamma driver, which seems independently
broken?
2003-11-21 13:40:19 +00:00
Keith Whitwell
93320957f2 compilation fixes, disable ubyte color code for now at least 2003-11-12 14:26:20 +00:00
Keith Whitwell
374a09c4f7 Turn off some debug 2003-11-11 15:28:34 +00:00
Keith Whitwell
1302fd3b25 Clean a little 2003-11-11 15:12:24 +00:00
Keith Whitwell
5198950cde Don't adjust indicies if adjustment is zero 2003-11-11 15:11:59 +00:00
Keith Whitwell
88d66b7208 Fix import_color functions. 2003-11-11 15:07:58 +00:00
Keith Whitwell
701208d259 Add CallLists() to vtxfmt.
Restore old NormalLength optimization for display lists.
Add some heuristics to t_vtx_api.c to prevent bloated vertices and
excessive flushing (hopefully).
2003-11-11 11:42:50 +00:00
Keith Whitwell
dfd3c9c40f Add CallLists to vtxfmt definition. Fix some FLUSH() usage in save
functions.
2003-11-11 11:40:16 +00:00
Keith Whitwell
cef9471ab2 Add missing GL_FRONT_AND_BACK case. 2003-10-16 17:56:46 +00:00
Keith Whitwell
8d8bb0679c Fix assertion 2003-10-15 10:02:57 +00:00
Keith Whitwell
5affcd3cbb Restore code to clean incoming position data of size <= 2. 2003-10-14 18:10:47 +00:00
Keith Whitwell
86ac3e3c2d Deal with wrapped, weak primitives correctly. 2003-10-14 18:09:35 +00:00
Keith Whitwell
5c2d467e6d Bind material data when required.
Remove #if 0 blocks
Need to verify VertexProgram behaviour.
2003-10-14 18:08:48 +00:00
Keith Whitwell
c00a1c4622 Implement FALLBACK() when receiving EvalCoord or CallList inside
begin/end pair when compiling.

Clean up compilation state invalidation a little.
2003-10-14 12:00:33 +00:00
Keith Whitwell
dad38213e7 Reset ctx->Driver.CurrentSavePrimitive to PRIM_UNKNOWN after compiling a
glCallList() command.
2003-10-14 11:33:04 +00:00
Keith Whitwell
9cbad64314 Implement compiled DrawArrays and DrawElements.
Use the PRIM_WEAK flag to make sure they are executed correctly on playback.
2003-10-14 11:24:28 +00:00
Keith Whitwell
f0bf8c0ed1 Initialize the arrayelt helper 2003-10-14 11:23:52 +00:00
Keith Whitwell
6b692dc06c Make it clear that the driver (or tnl/ module) must supply
the DrawArray/DrawElements code for the outside-begin-end compilation states.
2003-10-14 11:23:08 +00:00
Keith Whitwell
be3c25458b Use correct check to terminate DrawArrays loop 2003-10-14 11:18:04 +00:00
Keith Whitwell
a384b0c5eb Cope with being initialized multiple times. 2003-10-14 11:12:15 +00:00
Keith Whitwell
acfa4d46a4 Use _mesa_compile_error() rather than just _mesa_error(). 2003-10-14 10:29:13 +00:00
Keith Whitwell
df3b1eb5bc Cope with dangling attribute references from display lists
Handle colormaterial updates correctly
2003-10-14 10:19:05 +00:00
Keith Whitwell
34a9e4adaf use VERT_ATTRIB constants in definitions of _save_VertexAttrib* 2003-10-13 18:26:19 +00:00
Keith Whitwell
34f6df8b6d Add code for GL_COMPILE_AND_EXECUTE 2003-10-13 18:24:38 +00:00
Keith Whitwell
5fc6940aca Use ctx->Exec rather than _glapi_Dispatch so that this will work
even in COMPILE_AND_EXECUTE modes.
2003-10-13 18:24:14 +00:00
Keith Whitwell
c9c27a6efd Fix error in material recording.
Add flush commands to new vertex functions for serializing with tnl module.
2003-10-13 18:04:02 +00:00
Keith Whitwell
79a49e30a1 Fix several more display list glitches.
Get 'loopback' replay of display lists working.
2003-10-13 18:01:05 +00:00
Keith Whitwell
f1582dbe52 use VERT_ATTRIB constants in definitions of _tnl_VertexAttrib* 2003-10-13 18:00:00 +00:00
Keith Whitwell
4fc77f884c Fix typo in VertexAttrib2fNV 2003-10-13 17:21:16 +00:00
Keith Whitwell
398f8d10a2 Correctly convert back colors to GLchan values when copying 2003-10-13 12:48:15 +00:00
Keith Whitwell
5b9ad341a0 Correct initialization of tnl->vtx.current for material attributes. 2003-10-13 12:31:58 +00:00
Keith Whitwell
fcd68a2b30 Add code to get materials working in lighting again. 2003-10-13 12:29:35 +00:00
Keith Whitwell
f1bbe8d0a5 Flush vertex data before playing back a vertex_list. 2003-10-13 12:27:58 +00:00
Keith Whitwell
3c0cfda46b remove debug statements 2003-10-13 09:19:13 +00:00
Keith Whitwell
5d80efc35e Fix a few minor displaylist bugs 2003-10-13 09:18:09 +00:00
Keith Whitwell
e01f56b3a8 Solve the gears glitches. 2003-10-10 21:54:34 +00:00
Keith Whitwell
30cd200068 Fix a typo with evalcoord1f 2003-10-10 21:40:53 +00:00
Keith Whitwell
e55c545d4a Get edgeflag/unfilled polygons working.
Don't allow more vertices in a vertex list than ctx->Const.MaxArrayLockSize.
2003-10-10 19:19:50 +00:00
Keith Whitwell
b101554d16 vertex_list display lists (replacing the old immediate struct) are
working, though gears shows a couple of glitches still.
2003-10-10 18:35:57 +00:00
Keith Whitwell
1b8c209523 Fallback (opcode-based) display lists are working. 2003-10-10 13:05:40 +00:00
Keith Whitwell
d46adad5cd Fix assertion in render stage.
Add missing call to _mesa_update_state() before running pipeline
Bind ctx->Current values when no user-supplied vertex data available.
2003-10-10 12:18:01 +00:00
Keith Whitwell
bfc37379cc Added quite a bit of debug prints. Fixed a couple of smaller bugs.
Isosurf and pointblast run & looks pretty close to correct!
2003-10-10 09:32:55 +00:00
Keith Whitwell
0c390fec04 Checkpoint -- The whole library compiles now... 2003-10-09 17:42:36 +00:00
Keith Whitwell
d5c9fd383b Checkpoint -- module compiles. Some issues with strides outstanding. 2003-10-09 14:45:30 +00:00
Keith Whitwell
8ae69294ad Checkpoint commit -- module compiles 2003-10-09 13:45:50 +00:00
Keith Whitwell
46330d3aa7 remove one more unused type 2003-10-09 10:16:05 +00:00
Keith Whitwell
c91f7ad52b Remove no-longer-used vector types 2003-10-09 10:06:14 +00:00
Keith Whitwell
5b40d6924c Actually include the dlist.c changes this time. 2003-10-08 17:31:58 +00:00
Keith Whitwell
27b4c2d675 new file 2003-10-08 17:05:07 +00:00
Keith Whitwell
051a8141d1 Checkpoint commit.
- Changes flowing from rework in tnl/ module.
2003-10-08 16:52:17 +00:00
Keith Whitwell
9b6d6988c4 Checkpoint commit. Doesn't yet compile.
- New vertex building code to replace 'struct immediate' stuff.
- New display list compiler designed for hardware acceleration.
- Emphasis of 'Attrib' pointers over traditional 'Color', 'Normal', etc.
2003-10-08 16:51:36 +00:00
Keith Whitwell
967fa00a7f Modify vtxfmt code to always pass colors and indexes as floats.
Modify vtxfmt code to include size 1,2,3 vertex attribute functions.
Extend api_noop.c to include more functions for building an
   outside-begin-end dispatch table or vtxfmt.
Add opcodes to dlist.c to compile vertex attributes, begin/end commands, etc.
   - The intention is for these to be used as a fallback for an optimizing
	display list compiler.
Store Index internally as a float.
2003-10-08 16:49:42 +00:00
8563 changed files with 612194 additions and 2844159 deletions

View File

@@ -1,66 +0,0 @@
goto %1
:install
rem Check pip
if "%buildsystem%" == "scons" (
python --version
python -m pip --version
rem Install Mako
python -m pip install Mako==1.0.7
rem Install pywin32 extensions, needed by SCons
python -m pip install pypiwin32
rem Install python wheels, necessary to install SCons via pip
python -m pip install wheel
rem Install SCons
python -m pip install scons==3.0.1
call scons --version
) else (
python --version
python -m pip install Mako==1.0.7 meson
meson --version
rem Install pkg-config, which meson requires even on windows
cinst -y pkgconfiglite
)
rem Install flex/bison
set WINFLEXBISON_ARCHIVE=win_flex_bison-%WINFLEXBISON_VERSION%.zip
if not exist "%WINFLEXBISON_ARCHIVE%" appveyor DownloadFile "https://github.com/lexxmark/winflexbison/releases/download/v%WINFLEXBISON_VERSION%/%WINFLEXBISON_ARCHIVE%"
7z x -y -owinflexbison\ "%WINFLEXBISON_ARCHIVE%" > nul
set Path=%CD%\winflexbison;%Path%
win_flex --version
win_bison --version
rem Download and extract LLVM
if not exist "%LLVM_ARCHIVE%" appveyor DownloadFile "https://people.freedesktop.org/~jrfonseca/llvm/%LLVM_ARCHIVE%"
7z x -y "%LLVM_ARCHIVE%" > nul
if "%buildsystem%" == "scons" (
mkdir llvm\bin
set LLVM=%CD%\llvm
) else (
move llvm subprojects\
copy .appveyor\llvm-wrap.meson subprojects\llvm\meson.build
)
goto :eof
:build_script
if "%buildsystem%" == "scons" (
call scons -j%NUMBER_OF_PROCESSORS% MSVC_VERSION=14.1 llvm=1
) else (
call "C:\Program Files (x86)\Microsoft Visual Studio\2017\Community\Common7\Tools\VsDevCmd.bat" -arch=x86
rem We use default-library as static to affect any wraps (such as expat and zlib)
rem it would be better if we could set subprojects buildtype independently,
rem but I haven't written that patch yet :)
call meson builddir --backend=vs2017 --default-library=static -Dbuild-tests=true -Db_vscrt=mtd --buildtype=release -Dllvm=true -Dgallium-drivers=swrast -Dosmesa=gallium
pushd builddir
call msbuild mesa.sln /m
popd
)
goto :eof
:test_script
if "%buildsystem%" == "scons" (
call scons -j%NUMBER_OF_PROCESSORS% MSVC_VERSION=14.1 llvm=1 check
) else (
call meson test -C builddir
)
goto :eof

View File

@@ -1,36 +0,0 @@
# A meson.build file for binary wrapping the LLVM used in the appvyeor CI
project('llvm', ['cpp'])
cpp = meson.get_compiler('cpp')
_deps = []
_search = join_paths(meson.current_source_dir(), 'lib')
foreach d : ['LLVMAnalysis', 'LLVMAsmParser', 'LLVMAsmPrinter',
'LLVMBinaryFormat', 'LLVMBitReader', 'LLVMBitWriter',
'LLVMCodeGen', 'LLVMCore', 'LLVMCoroutines', 'LLVMCoverage',
'LLVMDebugInfoCodeView', 'LLVMDebugInfoDWARF',
'LLVMDebugInfoMSF', 'LLVMDebugInfoPDB', 'LLVMDemangle',
'LLVMDlltoolDriver', 'LLVMExecutionEngine', 'LLVMGlobalISel',
'LLVMInstCombine', 'LLVMInstrumentation', 'LLVMInterpreter',
'LLVMipo', 'LLVMIRReader', 'LLVMLibDriver', 'LLVMLineEditor',
'LLVMLinker', 'LLVMLTO', 'LLVMMCDisassembler', 'LLVMMCJIT',
'LLVMMC', 'LLVMMCParser', 'LLVMMIRParser', 'LLVMObjCARCOpts',
'LLVMObject', 'LLVMObjectYAML', 'LLVMOption', 'LLVMOrcJIT',
'LLVMPasses', 'LLVMProfileData', 'LLVMRuntimeDyld',
'LLVMScalarOpts', 'LLVMSelectionDAG', 'LLVMSupport',
'LLVMSymbolize', 'LLVMTableGen', 'LLVMTarget',
'LLVMTransformUtils', 'LLVMVectorize', 'LLVMX86AsmParser',
'LLVMX86AsmPrinter', 'LLVMX86CodeGen', 'LLVMX86Desc',
'LLVMX86Disassembler', 'LLVMX86Info', 'LLVMX86Utils',
'LLVMXRay']
_deps += cpp.find_library(d, dirs : _search)
endforeach
dep_llvm = declare_dependency(
include_directories : include_directories('include'),
dependencies : _deps,
version : '5.0.1',
)
has_rtti = false
irbuilder_h = files('include/llvm/IR/IRBuilder.h')

View File

@@ -1,18 +0,0 @@
((nil . ((show-trailing-whitespace . t)))
(prog-mode
(indent-tabs-mode . nil)
(tab-width . 8)
(c-basic-offset . 3)
(c-file-style . "stroustrup")
(fill-column . 78)
(eval . (progn
(c-set-offset 'case-label '0)
(c-set-offset 'innamespace '0)
(c-set-offset 'inline-open '0)))
(whitespace-style face indentation)
(whitespace-line-column . 79)
(eval ignore-errors
(require 'whitespace)
(whitespace-mode 1)))
(makefile-mode (indent-tabs-mode . t))
)

View File

@@ -1,40 +0,0 @@
# To use this config on you editor, follow the instructions at:
# http://editorconfig.org
root = true
[*]
charset = utf-8
insert_final_newline = true
tab_width = 8
[*.{c,h,cpp,hpp,cc,hh}]
indent_style = space
indent_size = 3
max_line_length = 78
[{Makefile*,*.mk}]
indent_style = tab
[{*.py,SCons*}]
indent_style = space
indent_size = 4
[*.pl]
indent_style = space
indent_size = 4
[*.m4]
indent_style = space
indent_size = 2
[*.yml]
indent_style = space
indent_size = 2
[*.patch]
trim_trailing_whitespace = false
[{meson.build,meson_options.txt}]
indent_style = space
indent_size = 2

4
.gitignore vendored
View File

@@ -1,4 +0,0 @@
*.pyc
*.pyo
*.out
build

View File

@@ -1,532 +0,0 @@
# This is the tag of the docker image used for the build jobs. If the
# image doesn't exist yet, the containers stage generates it.
#
# In order to generate a new image, one should generally change the tag.
# While removing the image from the registry would also work, that's not
# recommended except for ephemeral images during development: Replacing
# an image after a significant amount of time might pull in newer
# versions of gcc/clang or other packages, which might break the build
# with older commits using the same tag.
#
# After merging a change resulting in generating a new image to the
# main repository, it's recommended to remove the image from the source
# repository's container registry, so that the image from the main
# repository's registry will be used there as well.
variables:
UPSTREAM_REPO: mesa/mesa
DEBIAN_TAG: "2019-10-29"
DEBIAN_ARM64_TAG: "arm64v8-2019-10-23"
STRETCH_TAG: "2019-09-18"
DEBIAN_VERSION: buster-slim
STRETCH_VERSION: stretch-slim
DEBIAN_IMAGE: "$CI_REGISTRY_IMAGE/debian/$DEBIAN_VERSION:$DEBIAN_TAG"
DEBIAN_ARM64_IMAGE: "$CI_REGISTRY_IMAGE/debian/$DEBIAN_VERSION:$DEBIAN_ARM64_TAG"
STRETCH_IMAGE: "$CI_REGISTRY_IMAGE/debian/$STRETCH_VERSION:$STRETCH_TAG"
include:
- project: 'wayland/ci-templates'
ref: 1f7f57c64ff4ebbf7292e3b7a13600518b8cb24c
file: '/templates/debian.yml'
include:
- local: '.gitlab-ci/lava-gitlab-ci.yml'
stages:
- container
- build
- test
# When to automatically run the CI
.ci-run-policy:
only:
refs:
- branches@mesa/mesa
- merge_requests
- /^ci([-/].*)?$/
changes:
- VERSION
- bin/**/*
# GitLab CI
- .gitlab-ci.yml
- .gitlab-ci/**/*
# Meson
- meson*
- build-support/**/*
- subprojects/**/*
# SCons
- SConstruct
- scons/**/*
- common.py
# Source code
- include/**/*
- src/**/*
retry:
max: 2
when:
- runner_system_failure
.ci-deqp-artifacts:
artifacts:
when: always
untracked: false
paths:
# Watch out! Artifacts are relative to the build dir.
# https://gitlab.com/gitlab-org/gitlab-ce/commit/8788fb925706cad594adf6917a6c5f6587dd1521
- artifacts
# Build the normal CI native and cross-build docker images.
.container:
stage: container
extends:
- .ci-run-policy
variables:
# no need to pull the whole repo to build the container image
GIT_STRATEGY: none
debian-10:amd64:
extends:
- .debian@container-ifnot-exists
- .container
variables:
DEBIAN_EXEC: 'bash .gitlab-ci/debian-install.sh'
.use-debian-10:amd64:
image: $DEBIAN_IMAGE
needs:
- debian-10:amd64
debian-9:amd64:
extends: debian-10:amd64
variables:
DEBIAN_TAG: $STRETCH_TAG
DEBIAN_VERSION: $STRETCH_VERSION
DEBIAN_IMAGE: $STRETCH_IMAGE
DEBIAN_EXEC: 'bash .gitlab-ci/debian-stretch-install.sh'
.use-debian-9:amd64:
image: $STRETCH_IMAGE
needs:
- debian-9:amd64
debian-10:arm64:
extends:
- .debian@container-ifnot-exists@arm64v8
- .container
variables:
DEBIAN_TAG: "$DEBIAN_ARM64_TAG"
DEBIAN_EXEC: 'bash .gitlab-ci/debian-arm64-install.sh'
# BUILD
# Shared between windows and Linux
.build-common:
extends: .ci-run-policy
stage: build
artifacts:
when: always
paths:
- _build/meson-logs/*.txt
# scons:
- build/*/config.log
- shader-db
# Just Linux
.build-linux:
extends: .build-common
cache:
key: ${CI_JOB_NAME}
paths:
- ccache
variables:
CCACHE_COMPILERCHECK: "content"
# Use ccache transparently, and print stats before/after
before_script:
- export PATH="/usr/lib/ccache:$PATH"
- export CCACHE_BASEDIR="$PWD"
- export CCACHE_DIR="$PWD/ccache"
- ccache --max-size=1500M
- ccache --zero-stats || true
- ccache --show-stats || true
after_script:
# In case the install dir is being saved as artifacts, tar it up
# so that symlinks and hardlinks aren't each packed separately in
# the zip file.
- if [ -d install ]; then
tar -cf artifacts/install.tar install;
fi
- export CCACHE_DIR="$PWD/ccache"
- ccache --show-stats
.build-windows:
extends: .build-common
tags:
- mesa-windows
cache:
key: ${CI_JOB_NAME}
paths:
- subprojects/packagecache
.meson-build:
extends:
- .build-linux
- .use-debian-10:amd64
script:
- .gitlab-ci/meson-build.sh
.scons-build:
extends:
- .build-linux
- .use-debian-10:amd64
variables:
SCONSFLAGS: "-j4"
script:
- .gitlab-ci/scons-build.sh
meson-main:
extends:
- .meson-build
- .ci-deqp-artifacts
variables:
UNWIND: "true"
DRI_LOADERS: >
-D glx=dri
-D gbm=true
-D egl=true
-D platforms=x11,wayland,drm,surfaceless
DRI_DRIVERS: "i915,i965,r100,r200,nouveau"
GALLIUM_ST: >
-D dri3=true
-D gallium-extra-hud=true
-D gallium-vdpau=true
-D gallium-xvmc=true
-D gallium-omx=bellagio
-D gallium-va=true
-D gallium-xa=true
-D gallium-nine=true
-D gallium-opencl=disabled
GALLIUM_DRIVERS: "iris,nouveau,kmsro,r300,r600,freedreno,swrast,svga,v3d,vc4,virgl,etnaviv,panfrost,lima,zink"
LLVM_VERSION: "7"
EXTRA_OPTION: >
-D osmesa=gallium
-D tools=all
MESON_SHADERDB: "true"
BUILDTYPE: "debugoptimized"
.meson-cross:
extends:
- .meson-build
variables:
UNWIND: "false"
DRI_LOADERS: >
-D glx=disabled
-D gbm=false
-D egl=true
-D platforms=surfaceless
-D osmesa=none
GALLIUM_ST: >
-D dri3=false
-D gallium-vdpau=false
-D gallium-xvmc=false
-D gallium-omx=disabled
-D gallium-va=false
-D gallium-xa=false
-D gallium-nine=false
.meson-arm:
extends: .meson-cross
image: $DEBIAN_ARM64_IMAGE
variables:
VULKAN_DRIVERS: freedreno
GALLIUM_DRIVERS: "etnaviv,freedreno,kmsro,lima,nouveau,panfrost,swrast,tegra,v3d,vc4"
EXTRA_OPTION: >
-D I-love-half-baked-turnips=true
needs:
- debian-10:arm64
tags:
- aarch64
meson-armhf:
extends: .meson-arm
variables:
CROSS: armhf
LLVM_VERSION: "7"
meson-arm64:
extends:
- .meson-arm
- .ci-deqp-artifacts
variables:
BUILDTYPE: "debugoptimized"
# NOTE: Building SWR is 2x (yes two) times slower than all the other
# gallium drivers combined.
# Start this early so that it doesn't limit the total run time.
#
# We also stick the glvnd build here, since we want non-glvnd in
# meson-main for actual driver CI.
meson-swr-glvnd:
extends: .meson-build
variables:
UNWIND: "true"
DRI_LOADERS: >
-D glvnd=true
-D egl=true
GALLIUM_ST: >
-D dri3=true
-D gallium-vdpau=false
-D gallium-xvmc=false
-D gallium-omx=disabled
-D gallium-va=false
-D gallium-xa=false
-D gallium-nine=false
-D gallium-opencl=disabled
GALLIUM_DRIVERS: "swr,iris"
LLVM_VERSION: "6.0"
meson-clang:
extends: .meson-build
variables:
UNWIND: "true"
DRI_DRIVERS: "auto"
GALLIUM_DRIVERS: "auto"
VULKAN_DRIVERS: intel,amd,freedreno
CC: "ccache clang-8"
CXX: "ccache clang++-8"
.meson-windows:
extends:
- .build-windows
before_script:
- $ENV:ARCH = "x86"
- $ENV:VERSION = "2019\Community"
script:
- cmd /C .gitlab-ci\meson-build.bat
scons-swr:
extends: .scons-build
variables:
SCONS_TARGET: "swr=1"
SCONS_CHECK_COMMAND: "true"
LLVM_VERSION: "6.0"
scons-win64:
extends: .scons-build
variables:
SCONS_TARGET: platform=windows machine=x86_64
SCONS_CHECK_COMMAND: "true"
meson-clover:
extends: .meson-build
variables:
UNWIND: "true"
DRI_LOADERS: >
-D glx=disabled
-D egl=false
-D gbm=false
GALLIUM_ST: >
-D dri3=false
-D gallium-vdpau=false
-D gallium-xvmc=false
-D gallium-omx=disabled
-D gallium-va=false
-D gallium-xa=false
-D gallium-nine=false
-D gallium-opencl=icd
script:
- export GALLIUM_DRIVERS="r600,radeonsi"
- .gitlab-ci/meson-build.sh
- LLVM_VERSION=8 .gitlab-ci/meson-build.sh
- export GALLIUM_DRIVERS="i915,r600"
- LLVM_VERSION=6.0 .gitlab-ci/meson-build.sh
- LLVM_VERSION=7 .gitlab-ci/meson-build.sh
meson-clover-old-llvm:
extends:
- meson-clover
- .use-debian-9:amd64
variables:
UNWIND: "false"
DRI_LOADERS: >
-D glx=disabled
-D egl=false
-D gbm=false
-D platforms=drm,surfaceless
GALLIUM_DRIVERS: "i915,r600"
script:
- LLVM_VERSION=3.9 .gitlab-ci/meson-build.sh
- LLVM_VERSION=4.0 .gitlab-ci/meson-build.sh
- LLVM_VERSION=5.0 .gitlab-ci/meson-build.sh
meson-vulkan:
extends: .meson-build
variables:
UNWIND: "false"
DRI_LOADERS: >
-D glx=disabled
-D gbm=false
-D egl=false
-D platforms=x11,wayland,drm
-D osmesa=none
GALLIUM_ST: >
-D dri3=true
-D gallium-vdpau=false
-D gallium-xvmc=false
-D gallium-omx=disabled
-D gallium-va=false
-D gallium-xa=false
-D gallium-nine=false
-D gallium-opencl=disabled
-D b_sanitize=undefined
-D c_args=-fno-sanitize-recover=all
-D cpp_args=-fno-sanitize-recover=all
UBSAN_OPTIONS: "print_stacktrace=1"
VULKAN_DRIVERS: intel,amd,freedreno
LLVM_VERSION: "8"
EXTRA_OPTION: >
-D vulkan-overlay-layer=true
# While the main point of this build is testing the i386 cross build,
# we also use this one to test some other options that are exclusive
# with meson-main's choices (classic swrast and osmesa)
meson-i386:
extends: .meson-cross
variables:
CROSS: i386
VULKAN_DRIVERS: intel
DRI_DRIVERS: "swrast"
GALLIUM_DRIVERS: "iris"
EXTRA_OPTION: >
-D vulkan-overlay-layer=true
-D llvm=false
-D osmesa=classic
meson-mingw32-x86_64:
extends: .meson-build
variables:
UNWIND: "false"
DRI_DRIVERS: ""
GALLIUM_DRIVERS: "swrast"
EXTRA_OPTION: >
-Dllvm=false
-Dosmesa=gallium
--cross-file=.gitlab-ci/x86_64-w64-mingw32
scons:
extends: .scons-build
variables:
SCONS_TARGET: "llvm=1"
SCONS_CHECK_COMMAND: "scons llvm=1 force_scons=1 check"
script:
- SCONS_TARGET="" SCONS_CHECK_COMMAND="scons check force_scons=1" .gitlab-ci/scons-build.sh
- LLVM_VERSION=6.0 .gitlab-ci/scons-build.sh
- LLVM_VERSION=7 .gitlab-ci/scons-build.sh
- LLVM_VERSION=8 .gitlab-ci/scons-build.sh
scons-old-llvm:
extends:
- scons
- .use-debian-9:amd64
script:
- LLVM_VERSION=3.9 .gitlab-ci/scons-build.sh
- LLVM_VERSION=4.0 .gitlab-ci/scons-build.sh
- LLVM_VERSION=5.0 .gitlab-ci/scons-build.sh
.test:
extends: .ci-run-policy
stage: test
variables:
GIT_STRATEGY: none # testing doesn't build anything from source
.deqp-test:
extends:
- .test
- .use-debian-10:amd64
variables:
DEQP_SKIPS: deqp-default-skips.txt
script:
# Note: Build dir (and thus install) may be dirty due to GIT_STRATEGY
- rm -rf install
- tar -xf artifacts/install.tar
- ./artifacts/deqp-runner.sh
artifacts:
when: on_failure
name: "$CI_JOB_NAME-$CI_COMMIT_REF_NAME"
paths:
- results/
dependencies:
- meson-main
needs:
- meson-main
- debian-10:amd64
test-llvmpipe-gles2:
parallel: 4
variables:
DEQP_VER: gles2
DEQP_EXPECTED_FAILS: deqp-llvmpipe-fails.txt
LIBGL_ALWAYS_SOFTWARE: "true"
DEQP_RENDERER_MATCH: "llvmpipe"
extends: .deqp-test
test-softpipe-gles2:
extends: test-llvmpipe-gles2
variables:
DEQP_EXPECTED_FAILS: deqp-softpipe-fails.txt
DEQP_RENDERER_MATCH: "softpipe"
GALLIUM_DRIVER: "softpipe"
# The GLES2 CTS run takes about 8 minutes of CPU time, while GLES3 is
# 25 minutes. Until we can get its runtime down, just do a partial
# (every 10 tests) run.
test-softpipe-gles3-limited:
variables:
DEQP_VER: gles3
DEQP_EXPECTED_FAILS: deqp-softpipe-fails.txt
LIBGL_ALWAYS_SOFTWARE: "true"
DEQP_RENDERER_MATCH: "softpipe"
GALLIUM_DRIVER: "softpipe"
CI_NODE_INDEX: 1
CI_NODE_TOTAL: 10
extends: .deqp-test
arm64_a630_gles2:
extends: .deqp-test
image: $DEBIAN_ARM64_IMAGE
variables:
DEQP_VER: gles2
DEQP_RENDERER_MATCH: "FD630"
DEQP_EXPECTED_FAILS: deqp-freedreno-a630-fails.txt
DEQP_SKIPS: deqp-freedreno-a630-skips.txt
NIR_VALIDATE: 0
tags:
- mesa-cheza
dependencies:
- meson-arm64
needs:
- meson-arm64
- debian-10:arm64
arm64_a630_gles31:
extends: arm64_a630_gles2
parallel: 4
variables:
DEQP_VER: gles31
arm64_a630_gles3:
parallel: 6
extends: arm64_a630_gles2
variables:
DEQP_VER: gles3
arm64_a306_gles2:
parallel: 4
extends: arm64_a630_gles2
variables:
DEQP_EXPECTED_FAILS: deqp-freedreno-a307-fails.txt
DEQP_SKIPS: deqp-default-skips.txt
DEQP_RENDERER_MATCH: "FD307"
tags:
- db410c

View File

@@ -1,122 +0,0 @@
## Mesa testing using gitlab-runner
The goal of the "test" stage of the .gitlab-ci.yml is to do pre-merge
testing of Mesa drivers on various platforms, so that we can ensure no
regressions are merged, as long as developers are merging code using
the "Merge when pipeline completes" button.
This document only covers the CI from .gitlab-ci.yml and this
directory. For other CI systems, see Intel's [Mesa
CI](https://gitlab.freedesktop.org/Mesa_CI) or panfrost's LAVA-based
CI (`src/gallium/drivers/panfrost/ci/`)
### Software architecture
For freedreno and llvmpipe CI, we're using gitlab-runner on the test
devices (DUTs), cached docker containers with VK-GL-CTS, and the
normal shared x86_64 runners to build the Mesa drivers to be run
inside of those containers on the DUTs.
The docker containers are rebuilt from the debian-install.sh script
when DEBIAN\_TAG is changed in .gitlab-ci.yml, and
debian-test-install.sh when DEBIAN\_ARM64\_TAG is changed in
.gitlab-ci.yml. The resulting images are around 500MB, and are
expected to change approximately weekly (though an individual
developer working on them may produce many more images while trying to
come up with a working MR!).
gitlab-runner is a client that polls gitlab.freedesktop.org for
available jobs, with no inbound networking requirements. Jobs can
have tags, so we can have DUT-specific jobs that only run on runners
with that tag marked in the gitlab UI.
Since dEQP takes a long time to run, we mark the job as "parallel" at
some level, which spawns multiple jobs from one definition, and then
deqp-runner.sh takes the corresponding fraction of the test list for
that job.
To reduce dEQP runtime (or avoid tests with unreliable results), a
deqp-runner.sh invocation can provide a list of tests to skip. If
your driver is not yet conformant, you can pass a list of expected
failures, and the job will only fail on tests that aren't listed (look
at the job's log for which specific tests failed).
### DUT requirements
#### DUTs must have a stable kernel and GPU reset.
If the system goes down during a test run, that job will eventually
time out and fail (default 1 hour). However, if the kernel can't
reliably reset the GPU on failure, bugs in one MR may leak into
spurious failures in another MR. This would be an unacceptable impact
on Mesa developers working on other drivers.
#### DUTs must be able to run docker
The Mesa gitlab-runner based test architecture is built around docker,
so that we can cache the debian package installation and CTS build
step across multiple test runs. Since the images are large and change
approximately weekly, the DUTs also need to be running some script to
prune stale docker images periodically in order to not run out of disk
space as we rev those containers (perhaps [this
script](https://gitlab.com/gitlab-org/gitlab-runner/issues/2980#note_169233611)).
Note that docker doesn't allow containers to be stored on NFS, and
doesn't allow multiple docker daemons to interact with the same
network block device, so you will probably need some sort of physical
storage on your DUTs.
#### DUTs must be public
By including your device in .gitlab-ci.yml, you're effectively letting
anyone on the internet run code on your device. docker containers may
provide some limited protection, but how much you trust that and what
you do to mitigate hostile access is up to you.
#### DUTs must expose the dri device nodes to the containers.
Obviously, to get access to the HW, we need to pass the render node
through. This is done by adding `devices = ["/dev/dri"]` to the
`runners.docker` section of /etc/gitlab-runner/config.toml.
### HW CI farm expectations
To make sure that testing of one vendor's drivers doesn't block
unrelated work by other vendors, we require that a given driver's test
farm produces a spurious failure no more than once a week. If every
driver had CI and failed once a week, we would be seeing someone's
code getting blocked on a spurious failure daily, which is an
unacceptable cost to the project.
Additionally, the test farm needs to be able to provide a short enough
turnaround time that people can regularly use the "Merge when pipeline
succeeds" button successfully (until we get
[marge-bot](https://github.com/smarkets/marge-bot) in place on
freedesktop.org). As a result, we require that the test farm be able
to handle a whole pipeline's worth of jobs in less than 5 minutes (to
compare, the build stage is about 10 minutes, if you could get all
your jobs scheduled on the shared runners in time.).
If a test farm is short the HW to provide these guarantees, consider
dropping tests to reduce runtime.
`VK-GL-CTS/scripts/log/bottleneck_report.py` can help you find what
tests were slow in a `results.qpa` file. Or, you can have a job with
no `parallel` field set and:
```
variables:
CI_NODE_INDEX: 1
CI_NODE_TOTAL: 10
```
to just run 1/10th of the test list.
If a HW CI farm goes offline (network dies and all CI pipelines end up
stalled) or its runners are consistenly spuriously failing (disk
full?), and the maintainer is not immediately available to fix the
issue, please push through an MR disabling that farm's jobs by adding
'.' to the front of the jobs names until the maintainer can bring
things back up. If this happens, the farm maintainer should provide a
report to mesa-dev@lists.freedesktop.org after the fact explaining
what happened and what the mitigation plan is for that failure next
time.

View File

@@ -1,46 +0,0 @@
CONFIG_LOCALVERSION="ccu"
CONFIG_DEBUG_KERNEL=y
CONFIG_DEVFREQ_GOV_PERFORMANCE=y
CONFIG_DEVFREQ_GOV_POWERSAVE=y
CONFIG_DEVFREQ_GOV_USERSPACE=y
CONFIG_DEVFREQ_GOV_PASSIVE=y
CONFIG_DEVFREQ_GOV_SIMPLE_ONDEMAND=y
CONFIG_DRM=y
CONFIG_DRM_ROCKCHIP=y
CONFIG_DRM_PANFROST=y
CONFIG_DRM_LIMA=y
CONFIG_DRM_PANEL_SIMPLE=y
CONFIG_PWM_CROS_EC=y
CONFIG_BACKLIGHT_PWM=y
CONFIG_ROCKCHIP_CDN_DP=n
CONFIG_SPI_ROCKCHIP=y
CONFIG_PWM_ROCKCHIP=y
CONFIG_PHY_ROCKCHIP_DP=y
CONFIG_DWMAC_ROCKCHIP=y
CONFIG_MFD_RK808=y
CONFIG_REGULATOR_RK808=y
CONFIG_RTC_DRV_RK808=y
CONFIG_COMMON_CLK_RK808=y
CONFIG_REGULATOR_FAN53555=y
CONFIG_REGULATOR=y
CONFIG_REGULATOR_VCTRL=y
CONFIG_KASAN=n
CONFIG_KASAN_INLINE=n
CONFIG_STACKTRACE=n
CONFIG_TMPFS=y
CONFIG_PROVE_LOCKING=n
CONFIG_DEBUG_LOCKDEP=n
CONFIG_SOFTLOCKUP_DETECTOR=n
CONFIG_BOOTPARAM_SOFTLOCKUP_PANIC=n

View File

@@ -1,84 +0,0 @@
CONFIG_LOCALVERSION="ccu"
CONFIG_DEBUG_KERNEL=y
CONFIG_DEVFREQ_GOV_PERFORMANCE=y
CONFIG_DEVFREQ_GOV_POWERSAVE=y
CONFIG_DEVFREQ_GOV_USERSPACE=y
CONFIG_DEVFREQ_GOV_PASSIVE=y
CONFIG_DRM=y
CONFIG_DRM_ROCKCHIP=y
CONFIG_DRM_PANFROST=y
CONFIG_DRM_LIMA=y
CONFIG_DRM_PANEL_SIMPLE=y
CONFIG_PWM_CROS_EC=y
CONFIG_BACKLIGHT_PWM=y
CONFIG_ROCKCHIP_CDN_DP=n
CONFIG_SPI_ROCKCHIP=y
CONFIG_PWM_ROCKCHIP=y
CONFIG_PHY_ROCKCHIP_DP=y
CONFIG_DWMAC_ROCKCHIP=y
CONFIG_STMMAC_ETH=y
CONFIG_TYPEC_FUSB302=y
CONFIG_TYPEC=y
CONFIG_TYPEC_TCPM=y
CONFIG_ARCH_SUNXI=n
CONFIG_ARCH_ALPINE=n
CONFIG_ARCH_BCM2835=n
CONFIG_ARCH_BCM_IPROC=n
CONFIG_ARCH_BERLIN=n
CONFIG_ARCH_BRCMSTB=n
CONFIG_ARCH_EXYNOS=n
CONFIG_ARCH_K3=n
CONFIG_ARCH_LAYERSCAPE=n
CONFIG_ARCH_LG1K=n
CONFIG_ARCH_HISI=n
CONFIG_ARCH_MEDIATEK=n
CONFIG_ARCH_MVEBU=n
CONFIG_ARCH_QCOM=n
CONFIG_ARCH_SEATTLE=n
CONFIG_ARCH_SYNQUACER=n
CONFIG_ARCH_RENESAS=n
CONFIG_ARCH_R8A774A1=n
CONFIG_ARCH_R8A774C0=n
CONFIG_ARCH_R8A7795=n
CONFIG_ARCH_R8A7796=n
CONFIG_ARCH_R8A77965=n
CONFIG_ARCH_R8A77970=n
CONFIG_ARCH_R8A77980=n
CONFIG_ARCH_R8A77990=n
CONFIG_ARCH_R8A77995=n
CONFIG_ARCH_STRATIX10=n
CONFIG_ARCH_TEGRA=n
CONFIG_ARCH_SPRD=n
CONFIG_ARCH_THUNDER=n
CONFIG_ARCH_THUNDER2=n
CONFIG_ARCH_UNIPHIER=n
CONFIG_ARCH_VEXPRESS=n
CONFIG_ARCH_XGENE=n
CONFIG_ARCH_ZX=n
CONFIG_ARCH_ZYNQMP=n
CONFIG_ACPI=n
CONFIG_REGULATOR_FAN53555=y
CONFIG_REGULATOR=y
CONFIG_REGULATOR_VCTRL=y
CONFIG_KASAN=n
CONFIG_KASAN_INLINE=n
CONFIG_STACKTRACE=n
CONFIG_TMPFS=y
CONFIG_PROVE_LOCKING=n
CONFIG_DEBUG_LOCKDEP=n
CONFIG_SOFTLOCKUP_DETECTOR=y
CONFIG_BOOTPARAM_SOFTLOCKUP_PANIC=y
CONFIG_DETECT_HUNG_TASK=y

View File

@@ -1,185 +0,0 @@
#!/bin/sh
set -ex
apt-get -y install --no-install-recommends initramfs-tools libpng16-16 strace libsensors5 libexpat1 libdrm2
passwd root -d
chsh -s /bin/sh
ln -s /bin/sh /init
#######################################################################
# Strip the image to a small minimal system without removing the debian
# toolchain.
# Copy timezone file and remove tzdata package
rm -rf /etc/localtime
cp /usr/share/zoneinfo/Etc/UTC /etc/localtime
UNNEEDED_PACKAGES="libfdisk1
tzdata
diffutils"
export DEBIAN_FRONTEND=noninteractive
# Removing unused packages
for PACKAGE in ${UNNEEDED_PACKAGES}
do
echo ${PACKAGE}
if ! apt-get remove --purge --yes "${PACKAGE}"
then
echo "WARNING: ${PACKAGE} isn't installed"
fi
done
apt-get autoremove --yes || true
# Dropping logs
rm -rf /var/log/*
# Dropping documentation, localization, i18n files, etc
rm -rf /usr/share/doc/*
rm -rf /usr/share/locale/*
rm -rf /usr/share/man
rm -rf /usr/share/i18n/*
rm -rf /usr/share/info/*
rm -rf /usr/share/lintian/*
rm -rf /usr/share/common-licenses/*
rm -rf /usr/share/mime/*
# Dropping reportbug scripts
rm -rf /usr/share/bug
# Drop udev hwdb not required on a stripped system
rm -rf /lib/udev/hwdb.bin /lib/udev/hwdb.d/*
# Drop all gconv conversions && binaries
rm -rf usr/bin/iconv
rm -rf usr/sbin/iconvconfig
rm -rf usr/lib/*/gconv/
# Remove libusb database
rm -rf usr/sbin/update-usbids
rm -rf var/lib/usbutils/usb.ids
rm -rf usr/share/misc/usb.ids
#######################################################################
# Crush into a minimal production image to be deployed via some type of image
# updating system.
# IMPORTANT: The Debian system is not longer functional at this point,
# for example, apt and dpkg will stop working
UNNEEDED_PACKAGES="apt libapt-pkg5.0 "\
"ncurses-bin ncurses-base libncursesw5 libncurses5 "\
"perl-base "\
"debconf libdebconfclient0 "\
"e2fsprogs e2fslibs libfdisk1 "\
"insserv "\
"udev "\
"init-system-helpers "\
"bash "\
"cpio "\
"passwd "\
"libsemanage1 libsemanage-common "\
"libsepol1 "\
"gzip "\
"gnupg "\
"gpgv "\
"hostname "\
"adduser "\
"debian-archive-keyring "\
"libgl1 libgl1-mesa-dri libglapi-mesa libglvnd0 libglx-mesa0 libegl-mesa0 libgles2 "\
"libllvm7 "\
"libx11-data libthai-data "\
"systemd dbus "\
# Removing unneeded packages
for PACKAGE in ${UNNEEDED_PACKAGES}
do
echo "Forcing removal of ${PACKAGE}"
if ! dpkg --purge --force-remove-essential --force-depends "${PACKAGE}"
then
echo "WARNING: ${PACKAGE} isn't installed"
fi
done
# Show what's left package-wise before dropping dpkg itself
COLUMNS=300 dpkg-query -W --showformat='${Installed-Size;10}\t${Package}\n' | sort -k1,1n
# Drop dpkg
dpkg --purge --force-remove-essential --force-depends dpkg
# No apt or dpkg, no need for its configuration archives
rm -rf etc/apt
rm -rf etc/dpkg
# Drop directories not part of ostree
# Note that /var needs to exist as ostree bind mounts the deployment /var over
# it
rm -rf var/* opt srv share
# ca-certificates are in /etc drop the source
rm -rf usr/share/ca-certificates
# No bash, no need for completions
rm -rf usr/share/bash-completion
# No zsh, no need for comletions
rm -rf usr/share/zsh/vendor-completions
# drop gcc-6 python helpers
rm -rf usr/share/gcc-6
# Drop sysvinit leftovers
rm -rf etc/init.d
rm -rf etc/rc[0-6S].d
# Drop upstart helpers
rm -rf etc/init
# Various xtables helpers
rm -rf usr/lib/xtables
# Drop all locales
# TODO: only remaining locale is actually "C". Should we really remove it?
rm -rf usr/lib/locale/*
# partition helpers
rm usr/sbin/*fdisk
# local compiler
rm usr/bin/localedef
# Systemd dns resolver
find usr etc -name '*systemd-resolve*' -prune -exec rm -r {} \;
# Systemd network configuration
find usr etc -name '*networkd*' -prune -exec rm -r {} \;
# systemd ntp client
find usr etc -name '*timesyncd*' -prune -exec rm -r {} \;
# systemd hw database manager
find usr etc -name '*systemd-hwdb*' -prune -exec rm -r {} \;
# No need for fuse
find usr etc -name '*fuse*' -prune -exec rm -r {} \;
# lsb init function leftovers
rm -rf usr/lib/lsb
# Only needed when adding libraries
rm usr/sbin/ldconfig*
# Games, unused
rmdir usr/games
# Remove pam module to authenticate against a DB
# plus libdb-5.3.so that is only used by this pam module
rm usr/lib/*/security/pam_userdb.so
rm usr/lib/*/libdb-5.3.so
# remove NSS support for nis, nisplus and hesiod
rm usr/lib/*/libnss_hesiod*
rm usr/lib/*/libnss_nis*
rm bin/tar

View File

@@ -1 +0,0 @@
u_format_test

View File

@@ -1,121 +0,0 @@
#!/bin/bash
set -e
set -o xtrace
############### Install packages for building
apt-get -y install ca-certificates
sed -i -e 's/http:\/\/deb/https:\/\/deb/g' /etc/apt/sources.list
echo 'deb https://deb.debian.org/debian buster-backports main' >/etc/apt/sources.list.d/backports.list
dpkg --add-architecture armhf
apt-get update
apt-get -y install \
bc \
bison \
bzip2 \
ccache \
cmake \
crossbuild-essential-armhf \
curl \
flex \
g++ \
gettext \
git \
libdrm-dev \
libdrm-dev:armhf \
libelf-dev \
libelf-dev:armhf \
libexpat1-dev \
libexpat1-dev:armhf \
libgbm-dev \
libgles2-mesa-dev \
libpng-dev \
libssl-dev \
llvm-7-dev:armhf \
llvm-8-dev \
meson \
ninja-build \
pkg-config \
procps \
python \
python3-mako \
wget \
zlib1g-dev
############### Generate cross build file for Meson
cross_file="/cross_file-armhf.txt"
/usr/share/meson/debcrossgen --arch armhf -o "$cross_file"
# Explicitly set ccache path for cross compilers
sed -i "s|/usr/bin/\([^-]*\)-linux-gnu\([^-]*\)-g|/usr/lib/ccache/\\1-linux-gnu\\2-g|g" "$cross_file"
# Don't need wrapper for armhf executables
sed -i -e '/\[properties\]/a\' -e "needs_exe_wrapper = False" "$cross_file"
export LIBDRM_VERSION=libdrm-2.4.99
############### Build libdrm
wget https://dri.freedesktop.org/libdrm/$LIBDRM_VERSION.tar.bz2
tar -xvf $LIBDRM_VERSION.tar.bz2 && rm $LIBDRM_VERSION.tar.bz2
cd $LIBDRM_VERSION; meson build/ -Detnaviv=true; ninja -C build/ install; cd ..
rm -rf $LIBDRM_VERSION
############### Build dEQP
git config --global user.email "mesa@example.com"
git config --global user.name "Mesa CI"
# XXX: Use --depth 1 once we can drop the cherry-picks.
git clone \
https://github.com/KhronosGroup/VK-GL-CTS.git \
-b opengl-es-cts-3.2.5.1 \
/VK-GL-CTS
cd /VK-GL-CTS
# Fix surfaceless build
git cherry-pick -x 22f41e5e321c6dcd8569c4dad91bce89f06b3670
git cherry-pick -x 1daa8dff73161ea60ead965bd6c9f2a0a2165648
# surfaceless links against libkms and such despite not using it.
sed -i '/gbm/d' targets/surfaceless/surfaceless.cmake
sed -i '/libkms/d' targets/surfaceless/surfaceless.cmake
sed -i '/libgbm/d' targets/surfaceless/surfaceless.cmake
# --insecure is due to SSL cert failures hitting sourceforge for zlib and
# libpng (sigh). The archives get their checksums checked anyway, and git
# always goes through ssh or https.
python3 external/fetch_sources.py --insecure
mkdir -p /deqp
cd /deqp
cmake -G Ninja \
-DDEQP_TARGET=surfaceless \
-DCMAKE_BUILD_TYPE=Release \
/VK-GL-CTS
ninja
# Copy out the mustpass lists we want from a bunch of other junk.
mkdir /deqp/mustpass
for gles in gles2 gles3 gles31; do
cp \
/deqp/external/openglcts/modules/gl_cts/data/mustpass/gles/aosp_mustpass/3.2.5.x/$gles-master.txt \
/deqp/mustpass/$gles-master.txt
done
rm -rf /deqp/external
rm -rf /deqp/modules/internal
rm -rf /deqp/executor
rm -rf /deqp/execserver
rm -rf /deqp/modules/egl
rm -rf /deqp/framework
du -sh *
rm -rf /VK-GL-CTS
############### Uninstall the build software
apt-get purge -y \
cmake \
git \
libgbm-dev \
libgles2-mesa-dev \
wget
apt-get autoremove -y --purge

View File

@@ -1,285 +0,0 @@
#!/bin/bash
set -e
set -o xtrace
export DEBIAN_FRONTEND=noninteractive
CROSS_ARCHITECTURES="i386"
for arch in $CROSS_ARCHITECTURES; do
dpkg --add-architecture $arch
done
apt-get install -y \
ca-certificates \
wget \
unzip
sed -i -e 's/http:\/\/deb/https:\/\/deb/g' /etc/apt/sources.list
echo 'deb https://deb.debian.org/debian buster-backports main' >/etc/apt/sources.list.d/backports.list
apt-get update
# Use newer packages from backports by default
cat >/etc/apt/preferences <<EOF
Package: *
Pin: release a=buster-backports
Pin-Priority: 500
EOF
apt-get dist-upgrade -y
apt-get install -y --no-remove \
llvm-6.0-dev \
libclang-6.0-dev \
llvm-7-dev \
libclang-7-dev \
llvm-8-dev \
libclang-8-dev \
g++ \
clang-8 \
git \
bzip2 \
zlib1g-dev \
pkg-config \
libxrender-dev \
libxdamage-dev \
libxxf86vm-dev \
gcc \
git \
libepoxy-dev \
libegl1-mesa-dev \
libgbm-dev \
libclc-dev \
libxvmc-dev \
libomxil-bellagio-dev \
xz-utils \
libexpat1-dev \
libx11-xcb-dev \
libelf-dev \
libunwind-dev \
libglvnd-dev \
libgtk-3-dev \
libpng-dev \
libgbm-dev \
libgles2-mesa-dev \
libvulkan-dev \
python-mako \
python3-mako \
bison \
flex \
gettext \
cmake \
meson \
scons
# Cross-build Mesa deps
for arch in $CROSS_ARCHITECTURES; do
apt-get install -y --no-remove \
libdrm-dev:${arch} \
libexpat1-dev:${arch} \
libelf-dev:${arch} \
crossbuild-essential-${arch}
done
# for 64bit windows cross-builds
apt-get install -y --no-remove \
mingw-w64 \
libz-mingw-w64-dev \
wine \
wine32 \
wine64
# Debian's pkg-config wrapers for mingw are broken, and there's no sign that
# they're going to be fixed, so we'll just have to fix it ourselves
# https://bugs.debian.org/cgi-bin/bugreport.cgi?bug=930492
cat >/usr/local/bin/x86_64-w64-mingw32-pkg-config <<EOF
#!/bin/sh
PKG_CONFIG_LIBDIR=/usr/x86_64-w64-mingw32/lib/pkgconfig pkg-config \$@
EOF
chmod +x /usr/local/bin/x86_64-w64-mingw32-pkg-config
# for the vulkan overlay layer
wget https://github.com/KhronosGroup/glslang/releases/download/master-tot/glslang-master-linux-Release.zip
unzip glslang-master-linux-Release.zip bin/glslangValidator
install -m755 bin/glslangValidator /usr/local/bin/
rm bin/glslangValidator glslang-master-linux-Release.zip
# dependencies where we want a specific version
export XORG_RELEASES=https://xorg.freedesktop.org/releases/individual
export XCB_RELEASES=https://xcb.freedesktop.org/dist
export WAYLAND_RELEASES=https://wayland.freedesktop.org/releases
export XORGMACROS_VERSION=util-macros-1.19.0
export GLPROTO_VERSION=glproto-1.4.17
export DRI2PROTO_VERSION=dri2proto-2.8
export LIBPCIACCESS_VERSION=libpciaccess-0.13.4
export LIBDRM_VERSION=libdrm-2.4.100
export XCBPROTO_VERSION=xcb-proto-1.13
export RANDRPROTO_VERSION=randrproto-1.5.0
export LIBXRANDR_VERSION=libXrandr-1.5.0
export LIBXCB_VERSION=libxcb-1.13
export LIBXSHMFENCE_VERSION=libxshmfence-1.3
export LIBVDPAU_VERSION=libvdpau-1.1
export LIBVA_VERSION=libva-1.7.0
export LIBWAYLAND_VERSION=wayland-1.15.0
export WAYLAND_PROTOCOLS_VERSION=wayland-protocols-1.12
wget $XORG_RELEASES/util/$XORGMACROS_VERSION.tar.bz2
tar -xvf $XORGMACROS_VERSION.tar.bz2 && rm $XORGMACROS_VERSION.tar.bz2
cd $XORGMACROS_VERSION; ./configure; make install; cd ..
rm -rf $XORGMACROS_VERSION
wget $XORG_RELEASES/proto/$GLPROTO_VERSION.tar.bz2
tar -xvf $GLPROTO_VERSION.tar.bz2 && rm $GLPROTO_VERSION.tar.bz2
cd $GLPROTO_VERSION; ./configure; make install; cd ..
rm -rf $GLPROTO_VERSION
wget $XORG_RELEASES/proto/$DRI2PROTO_VERSION.tar.bz2
tar -xvf $DRI2PROTO_VERSION.tar.bz2 && rm $DRI2PROTO_VERSION.tar.bz2
cd $DRI2PROTO_VERSION; ./configure; make install; cd ..
rm -rf $DRI2PROTO_VERSION
wget $XCB_RELEASES/$XCBPROTO_VERSION.tar.bz2
tar -xvf $XCBPROTO_VERSION.tar.bz2 && rm $XCBPROTO_VERSION.tar.bz2
cd $XCBPROTO_VERSION; ./configure; make install; cd ..
rm -rf $XCBPROTO_VERSION
wget $XCB_RELEASES/$LIBXCB_VERSION.tar.bz2
tar -xvf $LIBXCB_VERSION.tar.bz2 && rm $LIBXCB_VERSION.tar.bz2
cd $LIBXCB_VERSION; ./configure; make install; cd ..
rm -rf $LIBXCB_VERSION
wget $XORG_RELEASES/lib/$LIBPCIACCESS_VERSION.tar.bz2
tar -xvf $LIBPCIACCESS_VERSION.tar.bz2 && rm $LIBPCIACCESS_VERSION.tar.bz2
cd $LIBPCIACCESS_VERSION; ./configure; make install; cd ..
rm -rf $LIBPCIACCESS_VERSION
wget https://dri.freedesktop.org/libdrm/$LIBDRM_VERSION.tar.bz2
tar -xvf $LIBDRM_VERSION.tar.bz2 && rm $LIBDRM_VERSION.tar.bz2
cd $LIBDRM_VERSION; ./configure --enable-vc4 --enable-freedreno --enable-etnaviv-experimental-api; make install; cd ..
rm -rf $LIBDRM_VERSION
wget $XORG_RELEASES/proto/$RANDRPROTO_VERSION.tar.bz2
tar -xvf $RANDRPROTO_VERSION.tar.bz2 && rm $RANDRPROTO_VERSION.tar.bz2
cd $RANDRPROTO_VERSION; ./configure; make install; cd ..
rm -rf $RANDRPROTO_VERSION
wget $XORG_RELEASES/lib/$LIBXRANDR_VERSION.tar.bz2
tar -xvf $LIBXRANDR_VERSION.tar.bz2 && rm $LIBXRANDR_VERSION.tar.bz2
cd $LIBXRANDR_VERSION; ./configure; make install; cd ..
rm -rf $LIBXRANDR_VERSION
wget $XORG_RELEASES/lib/$LIBXSHMFENCE_VERSION.tar.bz2
tar -xvf $LIBXSHMFENCE_VERSION.tar.bz2 && rm $LIBXSHMFENCE_VERSION.tar.bz2
cd $LIBXSHMFENCE_VERSION; ./configure; make install; cd ..
rm -rf $LIBXSHMFENCE_VERSION
wget https://people.freedesktop.org/~aplattner/vdpau/$LIBVDPAU_VERSION.tar.bz2
tar -xvf $LIBVDPAU_VERSION.tar.bz2 && rm $LIBVDPAU_VERSION.tar.bz2
cd $LIBVDPAU_VERSION; ./configure; make install; cd ..
rm -rf $LIBVDPAU_VERSION
wget https://www.freedesktop.org/software/vaapi/releases/libva/$LIBVA_VERSION.tar.bz2
tar -xvf $LIBVA_VERSION.tar.bz2 && rm $LIBVA_VERSION.tar.bz2
cd $LIBVA_VERSION; ./configure --disable-wayland --disable-dummy-driver; make install; cd ..
rm -rf $LIBVA_VERSION
wget $WAYLAND_RELEASES/$LIBWAYLAND_VERSION.tar.xz
tar -xvf $LIBWAYLAND_VERSION.tar.xz && rm $LIBWAYLAND_VERSION.tar.xz
cd $LIBWAYLAND_VERSION; ./configure --enable-libraries --without-host-scanner --disable-documentation --disable-dtd-validation; make install; cd ..
rm -rf $LIBWAYLAND_VERSION
wget $WAYLAND_RELEASES/$WAYLAND_PROTOCOLS_VERSION.tar.xz
tar -xvf $WAYLAND_PROTOCOLS_VERSION.tar.xz && rm $WAYLAND_PROTOCOLS_VERSION.tar.xz
cd $WAYLAND_PROTOCOLS_VERSION; ./configure; make install; cd ..
rm -rf $WAYLAND_PROTOCOLS_VERSION
pushd /usr/local
git clone https://gitlab.freedesktop.org/mesa/shader-db.git --depth 1
rm -rf shader-db/.git
cd shader-db
make
popd
# Use ccache to speed up builds
apt-get install -y --no-remove ccache
# We need xmllint to validate the XML files in Mesa
apt-get install -y --no-remove libxml2-utils
# Generate cross build files for Meson
for arch in $CROSS_ARCHITECTURES; do
cross_file="/cross_file-$arch.txt"
/usr/share/meson/debcrossgen --arch "$arch" -o "$cross_file"
# Explicitly set ccache path for cross compilers
sed -i "s|/usr/bin/\([^-]*\)-linux-gnu\([^-]*\)-g|/usr/lib/ccache/\\1-linux-gnu\\2-g|g" "$cross_file"
if [ "$arch" = "i386" ]; then
# Work around a bug in debcrossgen that should be fixed in the next release
sed -i "s|cpu_family = 'i686'|cpu_family = 'x86'|g" "$cross_file"
# Don't need wrapper for i386 executables
sed -i -e '/\[properties\]/a\' -e "needs_exe_wrapper = False" "$cross_file"
fi
done
############### Build dEQP
git config --global user.email "mesa@example.com"
git config --global user.name "Mesa CI"
# XXX: Use --depth 1 once we can drop the cherry-picks.
git clone \
https://github.com/KhronosGroup/VK-GL-CTS.git \
-b opengl-es-cts-3.2.5.1 \
/VK-GL-CTS
cd /VK-GL-CTS
# Fix surfaceless build
git cherry-pick -x 22f41e5e321c6dcd8569c4dad91bce89f06b3670
git cherry-pick -x 1daa8dff73161ea60ead965bd6c9f2a0a2165648
# surfaceless links against libkms and such despite not using it.
sed -i '/gbm/d' targets/surfaceless/surfaceless.cmake
sed -i '/libkms/d' targets/surfaceless/surfaceless.cmake
sed -i '/libgbm/d' targets/surfaceless/surfaceless.cmake
python3 external/fetch_sources.py
mkdir -p /deqp
cd /deqp
cmake -G Ninja \
-DDEQP_TARGET=surfaceless \
-DCMAKE_BUILD_TYPE=Release \
/VK-GL-CTS
ninja
# Copy out the mustpass lists we want from a bunch of other junk.
mkdir /deqp/mustpass
for gles in gles2 gles3 gles31; do
cp \
/deqp/external/openglcts/modules/gl_cts/data/mustpass/gles/aosp_mustpass/3.2.5.x/$gles-master.txt \
/deqp/mustpass/$gles-master.txt
done
# Remove the rest of the build products that we don't need.
rm -rf /deqp/external
rm -rf /deqp/modules/internal
rm -rf /deqp/executor
rm -rf /deqp/execserver
rm -rf /deqp/modules/egl
rm -rf /deqp/framework
du -sh *
rm -rf /VK-GL-CTS
############### Uninstall the build software
apt-get purge -y \
wget \
unzip \
cmake \
git \
libgles2-mesa-dev \
libgbm-dev
apt-get autoremove -y --purge

View File

@@ -1,59 +0,0 @@
#!/bin/bash
set -e
set -o xtrace
export DEBIAN_FRONTEND=noninteractive
apt-get install -y \
apt-transport-https \
ca-certificates
sed -i -e 's/http:\/\/deb/https:\/\/deb/g' /etc/apt/sources.list
echo 'deb https://deb.debian.org/debian stretch-backports main' >/etc/apt/sources.list.d/backports.list
apt-get update
# Use newer packages from backports by default
cat >/etc/apt/preferences <<EOF
Package: *
Pin: release a=stretch-backports
Pin-Priority: 500
EOF
apt-get dist-upgrade -y
apt-get install -y --no-remove \
llvm-3.9-dev \
libclang-3.9-dev \
llvm-4.0-dev \
libclang-4.0-dev \
llvm-5.0-dev \
libclang-5.0-dev \
g++ \
bzip2 \
ccache \
zlib1g-dev \
pkg-config \
gcc \
git \
libepoxy-dev \
libclc-dev \
xz-utils \
libdrm-dev \
libexpat1-dev \
libelf-dev \
libunwind-dev \
libpng-dev \
python-mako \
python3-mako \
bison \
flex \
gettext \
scons \
meson
############### Uninstall unused packages
apt-get autoremove -y --purge

View File

@@ -1,10 +0,0 @@
# Note: skips lists for CI are just a list of lines that, when
# non-zero-length and not starting with '#', will regex match to
# delete lines from the test list. Be careful.
# Skip the perf/stress tests to keep runtime manageable
dEQP-GLES[0-9]*.performance
dEQP-GLES[0-9]*.stress
# These are really slow on tiling architectures (including llvmpipe).
dEQP-GLES[0-9]*.functional.flush_finish

View File

@@ -1,33 +0,0 @@
dEQP-GLES2.functional.clipping.line.wide_line_clip_viewport_center
dEQP-GLES2.functional.clipping.line.wide_line_clip_viewport_corner
dEQP-GLES2.functional.clipping.point.wide_point_clip
dEQP-GLES2.functional.clipping.point.wide_point_clip_viewport_center
dEQP-GLES2.functional.clipping.point.wide_point_clip_viewport_corner
dEQP-GLES2.functional.clipping.triangle_vertex.clip_three.clip_neg_x_neg_z_and_pos_x_pos_z_and_neg_x_neg_y_pos_z
dEQP-GLES2.functional.fbo.render.recreate_depthbuffer.rebind_rbo_rgb565_depth_component16
dEQP-GLES2.functional.fbo.render.recreate_depthbuffer.rebind_rbo_rgb5_a1_depth_component16
dEQP-GLES2.functional.fbo.render.recreate_depthbuffer.rebind_rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.recreate_depthbuffer.rebind_tex2d_rgba_depth_component16
dEQP-GLES2.functional.fbo.render.recreate_depthbuffer.rebind_tex2d_rgb_depth_component16
dEQP-GLES2.functional.fbo.render.recreate_stencilbuffer.rebind_rbo_rgb565_stencil_index8
dEQP-GLES2.functional.fbo.render.recreate_stencilbuffer.rebind_rbo_rgb5_a1_stencil_index8
dEQP-GLES2.functional.fbo.render.recreate_stencilbuffer.rebind_rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.recreate_stencilbuffer.rebind_tex2d_rgba_stencil_index8
dEQP-GLES2.functional.fbo.render.recreate_stencilbuffer.rebind_tex2d_rgb_stencil_index8
dEQP-GLES2.functional.polygon_offset.fixed16_displacement_with_units
dEQP-GLES2.functional.texture.filtering.2d.linear_nearest_clamp_l8_npot
dEQP-GLES2.functional.texture.filtering.2d.linear_nearest_clamp_rgb888_npot
dEQP-GLES2.functional.texture.filtering.2d.linear_nearest_clamp_rgba4444_npot
dEQP-GLES2.functional.texture.filtering.2d.linear_nearest_clamp_rgba8888_npot
dEQP-GLES2.functional.texture.filtering.2d.nearest_linear_clamp_l8_npot
dEQP-GLES2.functional.texture.filtering.2d.nearest_linear_clamp_rgb888_npot
dEQP-GLES2.functional.texture.filtering.2d.nearest_linear_clamp_rgba4444_npot
dEQP-GLES2.functional.texture.filtering.2d.nearest_linear_clamp_rgba8888_npot
dEQP-GLES2.functional.texture.filtering.cube.linear_nearest_clamp_l8_npot
dEQP-GLES2.functional.texture.filtering.cube.linear_nearest_clamp_rgb888_npot
dEQP-GLES2.functional.texture.filtering.cube.linear_nearest_clamp_rgba4444_npot
dEQP-GLES2.functional.texture.filtering.cube.linear_nearest_clamp_rgba8888_npot
dEQP-GLES2.functional.texture.filtering.cube.nearest_linear_clamp_l8_npot
dEQP-GLES2.functional.texture.filtering.cube.nearest_linear_clamp_rgb888_npot
dEQP-GLES2.functional.texture.filtering.cube.nearest_linear_clamp_rgba4444_npot
dEQP-GLES2.functional.texture.filtering.cube.nearest_linear_clamp_rgba8888_npot

View File

@@ -1,3 +0,0 @@
dEQP-GLES2.functional.clipping.triangle_vertex.clip_three.clip_neg_x_neg_z_and_pos_x_pos_z_and_neg_x_neg_y_pos_z
dEQP-GLES31.functional.stencil_texturing.render.depth24_stencil8_clear
dEQP-GLES31.functional.stencil_texturing.render.depth24_stencil8_draw

View File

@@ -1,29 +0,0 @@
# Note: skips lists for CI are just a list of lines that, when
# non-zero-length and not starting with '#', will regex match to
# delete lines from the test list. Be careful.
# Skip the perf/stress tests to keep runtime manageable
dEQP-GLES[0-9]*.performance
dEQP-GLES[0-9]*.stress
# These are really slow on tiling architectures (including llvmpipe).
dEQP-GLES[0-9]*.functional.flush_finish
# Unstable test results
dEQP-GLES3.functional.fragment_out.random.*
dEQP-GLES3.functional.transform_feedback.*
dEQP-GLES31.functional.primitive_bounding_box.*
dEQP-GLES31.functional.layout_binding.ssbo.fragment_binding_array
# Seen a couple flakes on this one. Note that valgrind complains about
# some things in deqp reference renderer on this one. Not sure if that
# is a real problem or perhaps valgrind gets confused about unitialized
# z24 channel in z24s8?? Let's just skip this one for now:
dEQP-GLES3.functional.fbo.msaa.2_samples.stencil_index8
# Two reports of spurious failures on unrelated MRs (2019-09-27, 2019-10-05)
dEQP-GLES3.functional.texture.specification.texsubimage2d_pbo.r16ui_2d
# Layered rendering is sysmem only and needs working clears
dEQP-GLES31.functional.geometry_shading.layered.*
dEQP-GLES31.functional.geometry_shading.instanced.*layer.*

View File

@@ -1,982 +0,0 @@
dEQP-GLES2.functional.depth_stencil_clear.stencil Fail
dEQP-GLES2.functional.depth_stencil_clear.stencil_masked Fail
dEQP-GLES2.functional.depth_stencil_clear.stencil_scissored Fail
dEQP-GLES2.functional.depth_stencil_clear.stencil_scissored_masked Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil_masked Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil_scissored Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil_scissored_masked Fail
dEQP-GLES2.functional.buffer.write.use.index_array.array Fail
dEQP-GLES2.functional.buffer.write.use.index_array.element_array Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_8_float2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_float2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_8_float2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_float2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_12_float3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_float3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_12_float3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_float3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_16_float4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_float4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_16_float4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_float4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_4_short2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_short2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_4_short2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_short2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_6_short3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_short3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_6_short3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_short3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_8_short4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_short4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_8_short4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_short4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_17_byte2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_byte2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_2_byte2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_17_byte2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_byte2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_3_byte3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_17_byte3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_byte3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_3_byte3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_17_byte3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_byte3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_4_byte4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_17_byte4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_byte4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_4_byte4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_17_byte4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_byte4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_8_fixed2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_fixed2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_8_fixed2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_fixed2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_12_fixed3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_fixed3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_12_fixed3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_fixed3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_16_fixed4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_fixed4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_16_fixed4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_fixed4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_float2_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_float2_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_float3_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_float3_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_float4_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_float4_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_short2_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_short2_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_short3_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_short3_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_short4_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_short4_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_byte2_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_byte2_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_byte3_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_byte3_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_byte4_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_byte4_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_short2_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_short3_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_short4_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_short4_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_byte2_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_byte2_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_byte3_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_byte3_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_byte4_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_byte4_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_fixed2_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_fixed2_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_fixed3_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_fixed3_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_fixed4_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_fixed4_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float3_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float3_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float4_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float4_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float2_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float2_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float3_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float3_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float4_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float4_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short3_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short3_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short4_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short4_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short2_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short2_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short3_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short3_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short4_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short4_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte3_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte3_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte4_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte4_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte2_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte2_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte3_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte3_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte4_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte4_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short3_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short3_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short4_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short4_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short2_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short2_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short3_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short3_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short4_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte3_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte3_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte4_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte4_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte2_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte2_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte3_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte3_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte4_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte4_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed3_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed3_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed4_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed4_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed2_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed2_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed3_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed3_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed4_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed4_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_float2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_float2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_float2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_float2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_float2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_float2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_float2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_float2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_float2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_float2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_float2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_float2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_float2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_float2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_float2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_float2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_float2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_float2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_fixed2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_fixed2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_fixed2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_fixed2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_fixed2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_fixed2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_fixed2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_fixed2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_fixed2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_fixed2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_fixed2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_fixed2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_fixed2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_fixed2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_fixed2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_fixed2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_fixed2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_fixed2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_short2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_short2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_short2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_4_short2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_4_short2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_4_short2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_short2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_short2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_short2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_short2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_short2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_short2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_4_short2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_4_short2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_4_short2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_short2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_short2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_short2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_byte2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_byte2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_2_byte2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_2_byte2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_2_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_17_byte2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_17_byte2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_17_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_byte2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_byte2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_byte2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_byte2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_2_byte2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_2_byte2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_2_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_17_byte2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_17_byte2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_17_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_byte2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_byte2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_8_float2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_32_float2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_8_float2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_32_float2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_8_float2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_32_float2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_8_float2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_32_float2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_1_2_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_1_17_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_1_32_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_1_2_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_1_17_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_1_32_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_2_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_17_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_32_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_2_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_17_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_32_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_17_2_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_17_17_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_17_32_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_17_2_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_17_17_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_17_32_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_2_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_17_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_32_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_2_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_17_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_32_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_8_fixed2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_32_fixed2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_8_fixed2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_32_fixed2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_8_fixed2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_32_fixed2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_8_fixed2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_32_fixed2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.float_first6_offset16_stride8_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.float_first24_offset16_stride8_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.float_first6_offset16_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.float_first24_offset16_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.float_first6_offset16_stride8_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.float_first24_offset16_stride8_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.float_first6_offset16_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.float_first24_offset16_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset1_stride2_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset1_stride2_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset1_stride17_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset1_stride17_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset1_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset1_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset1_stride2_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset1_stride2_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset1_stride17_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset1_stride17_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset1_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset1_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset16_stride2_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset16_stride2_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset16_stride17_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset16_stride17_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset16_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset16_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset16_stride2_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset16_stride2_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset16_stride17_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset16_stride17_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset16_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset16_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset17_stride2_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset17_stride2_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset17_stride17_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset17_stride17_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset17_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset17_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset17_stride2_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset17_stride2_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset17_stride17_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset17_stride17_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset17_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset17_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.fixed_first6_offset16_stride8_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.fixed_first24_offset16_stride8_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.fixed_first6_offset16_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.fixed_first24_offset16_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.fixed_first6_offset16_stride8_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.fixed_first24_offset16_stride8_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.fixed_first6_offset16_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.fixed_first24_offset16_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.attribute_count.2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.attribute_count.3 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.attribute_count.4 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.attribute_count.5 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.attribute_count.6 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.attribute_count.7 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.attribute_count.8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.storage.3_user_ptr_user_ptr_buffer Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.storage.3_user_ptr_buffer_user_ptr Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.storage.3_user_ptr_buffer_buffer Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.storage.3_buffer_user_ptr_user_ptr Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.storage.3_buffer_user_ptr_buffer Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.storage.3_buffer_buffer_user_ptr Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.storage.3_buffer_buffer_buffer Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_0_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_0_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_0_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_0_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_8_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_8_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_8_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_8_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_17_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_17_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_17_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_17_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_32_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_32_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_32_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_32_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_0_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_0_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_0_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_0_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_8_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_8_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_8_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_8_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_17_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_17_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_17_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_17_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_32_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_32_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_32_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_32_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_0_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_0_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_0_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_0_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_8_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_8_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_8_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_8_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_17_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_17_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_17_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_17_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_32_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_32_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_32_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_32_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_0_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_0_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_0_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_0_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_8_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_8_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_8_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_8_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_17_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_17_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_17_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_17_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_32_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_32_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_32_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_32_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_fixed2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_fixed2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_fixed2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_fixed2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_fixed2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_fixed2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_fixed2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_fixed2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_fixed2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_fixed2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_fixed2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_fixed2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_fixed2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_fixed2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_fixed2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_fixed2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_fixed2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_fixed2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_fixed2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_fixed2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_fixed2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_fixed2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_fixed2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_fixed2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_fixed2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.negative_api.texture.copyteximage2d_width_height_max_cube_neg_z BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copyteximage2d_invalid_border_tex2d BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copyteximage2d_invalid_border_cube_pos_x BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copyteximage2d_invalid_border_cube_pos_y BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copyteximage2d_invalid_border_cube_pos_z BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copyteximage2d_invalid_border_cube_neg_x BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copyteximage2d_invalid_border_cube_neg_y BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copyteximage2d_invalid_border_cube_neg_z BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copyteximage2d_incomplete_framebuffer BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copytexsubimage2d_invalid_target BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copytexsubimage2d_neg_level_tex2d BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copytexsubimage2d_neg_level_cube BadTerminate
dEQP-GLES2.functional.negative_api.texture.copytexsubimage2d_level_max_tex2d BadTerminate
dEQP-GLES2.functional.negative_api.texture.copytexsubimage2d_level_max_cube_pos BadTerminate
dEQP-GLES2.functional.negative_api.texture.copytexsubimage2d_neg_offset BadTerminate
dEQP-GLES2.functional.negative_api.texture.copytexsubimage2d_offset_allowed BadTerminate
dEQP-GLES2.functional.negative_api.texture.copytexsubimage2d_neg_wdt_hgt BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copytexsubimage2d_incomplete_framebuffer BadTerminate
dEQP-GLES2.functional.negative_api.texture.deletetextures_invalid_number BadTerminate
dEQP-GLES2.functional.negative_api.texture.deletetextures_invalid_number_bind BadTerminate
dEQP-GLES2.functional.negative_api.texture.generatemipmap_invalid_target BadTerminate
dEQP-GLES2.functional.negative_api.texture.generatemipmap_npot_wdt_hgt BadTerminate
dEQP-GLES2.functional.negative_api.texture.generatemipmap_zero_level_array_compressed BadTerminate
dEQP-GLES2.functional.negative_api.texture.generatemipmap_incomplete_cube BadTerminate
dEQP-GLES2.functional.negative_api.texture.gentextures_invalid_size BadTerminate
dEQP-GLES2.functional.negative_api.texture.pixelstorei_invalid_pname BadTerminate
dEQP-GLES2.functional.negative_api.texture.pixelstorei_invalid_param BadTerminate
dEQP-GLES2.functional.negative_api.texture.teximage2d_invalid_target BadTerminate
dEQP-GLES2.functional.negative_api.texture.teximage2d_invalid_format BadTerminate
dEQP-GLES2.functional.negative_api.texture.teximage2d_invalid_type BadTerminate
dEQP-GLES2.functional.negative_api.texture.teximage2d_inequal_width_height_cube BadTerminate
dEQP-GLES2.functional.negative_api.texture.teximage2d_neg_level_tex2d BadTerminate
dEQP-GLES2.functional.negative_api.texture.teximage2d_width_height_max_cube_neg_y BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.teximage2d_width_height_max_cube_neg_z BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.teximage2d_invalid_border BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.teximage2d_format_mismatch BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.teximage2d_type_format_mismatch BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_invalid_target BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_invalid_format BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_invalid_type BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_neg_level_tex2d BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_neg_level_cube BadTerminate
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_level_max_tex2d BadTerminate
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_level_max_cube BadTerminate
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_neg_offset BadTerminate
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_offset_allowed BadTerminate
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_neg_wdt_hgt BadTerminate
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_type_format_mismatch BadTerminate
dEQP-GLES2.functional.rasterization.primitives.triangles Fail
dEQP-GLES2.functional.rasterization.primitives.triangle_strip Fail
dEQP-GLES2.functional.rasterization.primitives.triangle_fan Fail
dEQP-GLES2.functional.rasterization.primitives.lines Fail
dEQP-GLES2.functional.rasterization.primitives.line_strip Fail
dEQP-GLES2.functional.rasterization.primitives.line_loop Fail
dEQP-GLES2.functional.rasterization.primitives.lines_wide Fail
dEQP-GLES2.functional.rasterization.primitives.line_strip_wide Fail
dEQP-GLES2.functional.rasterization.primitives.line_loop_wide Fail
dEQP-GLES2.functional.rasterization.primitives.points Fail
dEQP-GLES2.functional.rasterization.fill_rules.basic_quad Fail
dEQP-GLES2.functional.rasterization.fill_rules.basic_quad_reverse Fail
dEQP-GLES2.functional.rasterization.fill_rules.clipped_full Fail
dEQP-GLES2.functional.rasterization.fill_rules.clipped_partly Fail
dEQP-GLES2.functional.rasterization.fill_rules.projected Fail
dEQP-GLES2.functional.rasterization.culling.front_triangles Fail
dEQP-GLES2.functional.rasterization.culling.front_triangles_reverse Fail
dEQP-GLES2.functional.rasterization.culling.front_triangle_strip Fail
dEQP-GLES2.functional.rasterization.culling.front_triangle_strip_reverse Fail
dEQP-GLES2.functional.rasterization.culling.front_triangle_fan Fail
dEQP-GLES2.functional.rasterization.culling.front_triangle_fan_reverse Fail
dEQP-GLES2.functional.rasterization.culling.back_triangles Fail
dEQP-GLES2.functional.rasterization.culling.back_triangles_reverse Fail
dEQP-GLES2.functional.rasterization.culling.back_triangle_strip Fail
dEQP-GLES2.functional.rasterization.culling.back_triangle_strip_reverse Fail
dEQP-GLES2.functional.rasterization.culling.back_triangle_fan Fail
dEQP-GLES2.functional.rasterization.culling.back_triangle_fan_reverse Fail
dEQP-GLES2.functional.rasterization.interpolation.basic.triangles Fail
dEQP-GLES2.functional.rasterization.interpolation.basic.triangle_strip Fail
dEQP-GLES2.functional.rasterization.interpolation.basic.triangle_fan Fail
dEQP-GLES2.functional.rasterization.interpolation.basic.lines Fail
dEQP-GLES2.functional.rasterization.interpolation.basic.line_strip Fail
dEQP-GLES2.functional.rasterization.interpolation.basic.line_loop Fail
dEQP-GLES2.functional.rasterization.interpolation.basic.lines_wide Fail
dEQP-GLES2.functional.rasterization.interpolation.basic.line_strip_wide Fail
dEQP-GLES2.functional.rasterization.interpolation.basic.line_loop_wide Fail
dEQP-GLES2.functional.rasterization.interpolation.projected.triangles Fail
dEQP-GLES2.functional.rasterization.interpolation.projected.triangle_strip Fail
dEQP-GLES2.functional.rasterization.interpolation.projected.triangle_fan Fail
dEQP-GLES2.functional.rasterization.interpolation.projected.lines Fail
dEQP-GLES2.functional.rasterization.interpolation.projected.line_strip Fail
dEQP-GLES2.functional.rasterization.interpolation.projected.line_loop Fail
dEQP-GLES2.functional.rasterization.interpolation.projected.lines_wide Fail
dEQP-GLES2.functional.rasterization.interpolation.projected.line_strip_wide Fail
dEQP-GLES2.functional.rasterization.interpolation.projected.line_loop_wide Fail
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.bvec2_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.bvec3_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.bvec3_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.bvec3_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.bvec4_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.bvec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.bvec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.sampler2D_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.sampler2D_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.sampler2D_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.initial.render.basic_array.float_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.initial.render.basic_array.float_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.initial.render.basic_array.float_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bool_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bool_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bvec2_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bvec2_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bvec2_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bvec3_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bvec3_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bvec3_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bvec4_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bvec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bvec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.sampler2D_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.sampler2D_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.sampler2D_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic_struct.int_ivec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic_struct.int_ivec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic_struct.bool_bvec4_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic_struct.bool_bvec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic_struct.bool_bvec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic_struct.sampler2D_samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic_struct.sampler2D_samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic_struct.sampler2D_samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.float_vec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.float_vec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.float_vec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.mat4_mat2_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.mat4_mat2_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.mat4_mat2_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.int_ivec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.int_ivec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.int_ivec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.bool_bvec4_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.bool_bvec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.bool_bvec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.sampler2D_samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.sampler2D_samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.sampler2D_samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.float_vec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.float_vec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.float_vec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.mat4_mat2_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.mat4_mat2_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.mat4_mat2_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.int_ivec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.int_ivec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.int_ivec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.bool_bvec4_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.bool_bvec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.bool_bvec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.sampler2D_samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.sampler2D_samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.sampler2D_samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.float_vec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.float_vec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.float_vec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.mat4_mat2_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.mat4_mat2_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.mat4_mat2_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.int_ivec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.int_ivec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.int_ivec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.bool_bvec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.bool_bvec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.bool_bvec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.sampler2D_samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.sampler2D_samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.sampler2D_samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.multiple_basic.vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.multiple_basic.fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.multiple_basic.both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.multiple_basic_array.vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.multiple_basic_array.fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.multiple_basic_array.both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.multiple_nested_structs_arrays.vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.multiple_nested_structs_arrays.fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.multiple_nested_structs_arrays.both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.get_uniform.basic.float_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.get_uniform.basic.float_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.bvec3_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.bvec4_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.bvec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.bvec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.sampler2D_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.sampler2D_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.sampler2D_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_array.float_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_array.float_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_array.float_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_array.vec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_array.vec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_array.vec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.float_vec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.float_vec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.int_ivec4_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.int_ivec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.int_ivec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.bool_bvec4_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.bool_bvec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.bool_bvec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.sampler2D_samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.sampler2D_samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.sampler2D_samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.float_vec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.float_vec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.float_vec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.int_ivec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.int_ivec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.int_ivec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.bool_bvec4_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.bool_bvec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.bool_bvec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.sampler2D_samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.sampler2D_samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.sampler2D_samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.float_vec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.float_vec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.float_vec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.int_ivec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.int_ivec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.int_ivec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.bool_bvec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.bool_bvec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.bool_bvec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.sampler2D_samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.sampler2D_samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.sampler2D_samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.float_vec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.float_vec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.float_vec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.int_ivec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.int_ivec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.int_ivec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.bool_bvec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.bool_bvec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.bool_bvec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.sampler2D_samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.sampler2D_samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.sampler2D_samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.multiple_basic_array.vertex BadTerminate
dEQP-GLES2.functional.uniform_api.random.40 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.41 BadTerminate
dEQP-GLES2.functional.uniform_api.random.42 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.43 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.44 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.45 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.46 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.47 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.48 BadTerminate
dEQP-GLES2.functional.uniform_api.random.49 BadTerminate
dEQP-GLES2.functional.uniform_api.random.50 BadTerminate
dEQP-GLES2.functional.uniform_api.random.51 BadTerminate
dEQP-GLES2.functional.uniform_api.random.52 BadTerminate
dEQP-GLES2.functional.uniform_api.random.53 BadTerminate
dEQP-GLES2.functional.uniform_api.random.54 BadTerminate
dEQP-GLES2.functional.uniform_api.random.55 BadTerminate
dEQP-GLES2.functional.uniform_api.random.88 BadTerminate
dEQP-GLES2.functional.uniform_api.random.89 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.90 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.91 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.92 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.93 BadTerminate
dEQP-GLES2.functional.uniform_api.random.94 BadTerminate
dEQP-GLES2.functional.uniform_api.random.95 BadTerminate
dEQP-GLES2.functional.uniform_api.random.96 BadTerminate
dEQP-GLES2.functional.uniform_api.random.97 BadTerminate
dEQP-GLES2.functional.uniform_api.random.98 BadTerminate
dEQP-GLES2.functional.uniform_api.random.99 BadTerminate
dEQP-GLES2.functional.read_pixels.rgba_ubyte_align_1 BadTerminate
dEQP-GLES2.functional.read_pixels.rgba_ubyte_align_2 BadTerminate
dEQP-GLES2.functional.read_pixels.rgba_ubyte_align_4 BadTerminate
dEQP-GLES2.functional.read_pixels.rgba_ubyte_align_8 BadTerminate
dEQP-GLES2.functional.depth_range.write.reverse Fail
dEQP-GLES2.functional.depth_range.write.half_to_zero Fail
dEQP-GLES2.functional.depth_range.write.one_to_half Fail
dEQP-GLES2.functional.depth_range.write.0_8_to_third Fail
dEQP-GLES2.functional.depth_range.write.half_to_half Fail
dEQP-GLES2.functional.depth_range.compare.reverse Fail
dEQP-GLES2.functional.depth_range.compare.half_to_zero Fail
dEQP-GLES2.functional.depth_range.compare.one_to_half Fail
dEQP-GLES2.functional.depth_range.compare.0_8_to_third Fail
dEQP-GLES2.functional.depth_range.compare.half_to_half Fail
dEQP-GLES2.functional.dither.disabled.gradient_white Fail
dEQP-GLES2.functional.dither.disabled.gradient_red Fail
dEQP-GLES2.functional.dither.disabled.gradient_green Fail
dEQP-GLES2.functional.dither.disabled.gradient_blue Fail
dEQP-GLES2.functional.dither.disabled.gradient_alpha Fail
dEQP-GLES2.functional.dither.disabled.unicolored_quad_white Fail
dEQP-GLES2.functional.dither.disabled.unicolored_quad_red Fail
dEQP-GLES2.functional.dither.disabled.unicolored_quad_green Fail
dEQP-GLES2.functional.dither.disabled.unicolored_quad_blue Fail
dEQP-GLES2.functional.dither.disabled.unicolored_quad_alpha Fail
dEQP-GLES2.functional.state_query.fbo.framebuffer_attachment_texture_cube_map_face BadTerminate
dEQP-GLES2.functional.state_query.rbo.renderbuffer_size BadTerminate
dEQP-GLES2.functional.state_query.rbo.renderbuffer_internal_format BadTerminate
dEQP-GLES2.functional.state_query.rbo.renderbuffer_component_size_color BadTerminate
dEQP-GLES2.functional.draw.draw_arrays.first.first_0 Fail
dEQP-GLES2.functional.draw.draw_arrays.first.first_1 Fail
dEQP-GLES2.functional.draw.draw_arrays.first.first_17 Fail
dEQP-GLES2.functional.draw.draw_arrays.points.single_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.points.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_arrays.points.default_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.triangles.single_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.triangles.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_arrays.triangles.default_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.triangle_fan.single_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.triangle_fan.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_arrays.triangle_fan.default_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.triangle_strip.single_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.triangle_strip.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_arrays.triangle_strip.default_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.lines.single_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.lines.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_arrays.lines.default_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.line_strip.single_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.line_strip.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_arrays.line_strip.default_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.line_loop.single_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.line_loop.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_arrays.line_loop.default_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.indices.user_ptr.index_byte Fail
dEQP-GLES2.functional.draw.draw_elements.indices.user_ptr.index_short Fail
dEQP-GLES2.functional.draw.draw_elements.indices.unaligned_user_ptr.index_short Fail
dEQP-GLES2.functional.draw.draw_elements.indices.buffer.index_byte Fail
dEQP-GLES2.functional.draw.draw_elements.indices.buffer.index_short Fail
dEQP-GLES2.functional.draw.draw_elements.points.single_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.points.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_elements.points.default_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.triangles.single_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.triangles.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_elements.triangles.default_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.triangle_fan.single_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.triangle_fan.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_elements.triangle_fan.default_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.triangle_strip.single_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.triangle_strip.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_elements.triangle_strip.default_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.lines.single_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.lines.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_elements.lines.default_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.line_strip.single_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.line_strip.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_elements.line_strip.default_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.line_loop.single_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.line_loop.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_elements.line_loop.default_attribute Fail
dEQP-GLES2.functional.draw.random.0 Fail
dEQP-GLES2.functional.draw.random.1 Fail
dEQP-GLES2.functional.draw.random.2 Fail
dEQP-GLES2.functional.draw.random.6 Fail
dEQP-GLES2.functional.draw.random.8 Fail
dEQP-GLES2.functional.draw.random.9 Fail
dEQP-GLES2.functional.draw.random.10 Fail
dEQP-GLES2.functional.draw.random.12 Fail
dEQP-GLES2.functional.draw.random.14 Fail
dEQP-GLES2.functional.draw.random.16 Fail
dEQP-GLES2.functional.draw.random.17 Fail
dEQP-GLES2.functional.draw.random.18 Fail
dEQP-GLES2.functional.draw.random.20 Fail
dEQP-GLES2.functional.draw.random.21 Fail
dEQP-GLES2.functional.draw.random.25 Fail
dEQP-GLES2.functional.draw.random.26 Fail
dEQP-GLES2.functional.draw.random.28 Fail
dEQP-GLES2.functional.draw.random.30 Fail
dEQP-GLES2.functional.draw.random.31 Fail
dEQP-GLES2.functional.draw.random.32 Fail
dEQP-GLES2.functional.draw.random.33 Fail
dEQP-GLES2.functional.draw.random.34 Fail
dEQP-GLES2.functional.draw.random.36 Fail
dEQP-GLES2.functional.draw.random.37 Fail
dEQP-GLES2.functional.draw.random.39 Fail
dEQP-GLES2.functional.draw.random.40 Fail
dEQP-GLES2.functional.draw.random.41 Fail
dEQP-GLES2.functional.draw.random.42 Fail
dEQP-GLES2.functional.draw.random.43 Fail
dEQP-GLES2.functional.draw.random.44 Fail
dEQP-GLES2.functional.draw.random.45 Fail
dEQP-GLES2.functional.draw.random.46 Fail
dEQP-GLES2.functional.draw.random.47 Fail
dEQP-GLES2.functional.draw.random.48 Fail
dEQP-GLES2.functional.draw.random.49 Fail
dEQP-GLES2.functional.draw.random.50 Fail
dEQP-GLES2.functional.draw.random.51 Fail
dEQP-GLES2.functional.draw.random.52 Fail
dEQP-GLES2.functional.draw.random.56 Fail
dEQP-GLES2.functional.draw.random.58 Fail
dEQP-GLES2.functional.draw.random.61 Fail
dEQP-GLES2.functional.draw.random.62 Fail
dEQP-GLES2.functional.draw.random.63 Fail
dEQP-GLES2.functional.draw.random.65 Fail
dEQP-GLES2.functional.draw.random.67 Fail
dEQP-GLES2.functional.draw.random.69 Fail
dEQP-GLES2.functional.draw.random.70 Fail
dEQP-GLES2.functional.draw.random.71 Fail

View File

@@ -1,21 +0,0 @@
# Note: skips lists for CI are just a list of lines that, when
# non-zero-length and not starting with '#', will regex match to
# delete lines from the test list. Be careful.
# Skip the perf/stress tests to keep runtime manageable
dEQP-GLES[0-9]*.performance
dEQP-GLES[0-9]*.stress
# These are really slow on tiling architectures (including llvmpipe).
dEQP-GLES[0-9]*.functional.flush_finish
dEQP-GLES2.accuracy.texture.*
dEQP-GLES2.functional.clipping.*
dEQP-GLES2.functional.fbo.render.depth.*
dEQP-GLES2.functional.fbo.render.*
dEQP-GLES2.functional.fbo.completeness.*
dEQP-GLES2.functional.fragment_ops.*
dEQP-GLES2.functional.light_amount.*
dEQP-GLES2.functional.polygon_offset.*
dEQP-GLES2.functional.shaders.*
dEQP-GLES2.functional.texture.*

View File

@@ -1,124 +0,0 @@
dEQP-GLES2.functional.clipping.line.wide_line_clip_viewport_center
dEQP-GLES2.functional.clipping.line.wide_line_clip_viewport_corner
dEQP-GLES2.functional.clipping.point.wide_point_clip
dEQP-GLES2.functional.clipping.point.wide_point_clip_viewport_center
dEQP-GLES2.functional.clipping.point.wide_point_clip_viewport_corner
dEQP-GLES2.functional.clipping.triangle_vertex.clip_two.clip_neg_y_neg_z_and_neg_x_neg_y_pos_z
dEQP-GLES2.functional.clipping.triangle_vertex.clip_two.clip_pos_y_pos_z_and_neg_x_neg_y_neg_z
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgba4
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.depth.rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgba4
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgba4
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.recreate_depthbuffer.no_rebind_rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.recreate_depthbuffer.rebind_rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.recreate_stencilbuffer.no_rebind_rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.recreate_stencilbuffer.rebind_rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.rbo_rgba4
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.rbo_rgba4_depth_component16
dEQP-GLES2.functional.polygon_offset.default_displacement_with_units
dEQP-GLES2.functional.polygon_offset.fixed16_displacement_with_units
dEQP-GLES2.functional.rasterization.interpolation.basic.line_loop_wide
dEQP-GLES2.functional.rasterization.interpolation.basic.line_strip_wide
dEQP-GLES2.functional.rasterization.interpolation.basic.lines_wide
dEQP-GLES2.functional.rasterization.interpolation.projected.line_loop_wide
dEQP-GLES2.functional.rasterization.interpolation.projected.line_strip_wide
dEQP-GLES2.functional.rasterization.interpolation.projected.lines_wide
dEQP-GLES2.functional.rasterization.limits.points
dEQP-GLES2.functional.shaders.texture_functions.fragment.texture2d_bias
dEQP-GLES2.functional.shaders.texture_functions.fragment.texture2dproj_vec3_bias
dEQP-GLES2.functional.shaders.texture_functions.fragment.texture2dproj_vec4_bias
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_linear_clamp_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_linear_mirror_etc1
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_linear_mirror_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_linear_repeat_etc1
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_linear_repeat_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_nearest_clamp_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_nearest_mirror_etc1
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_nearest_mirror_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_nearest_repeat_etc1
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_nearest_repeat_l8
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_nearest_repeat_rgb888
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_nearest_repeat_rgba4444
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_nearest_repeat_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_linear_clamp_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_linear_mirror_etc1
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_linear_mirror_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_linear_repeat_etc1
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_linear_repeat_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_nearest_clamp_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_nearest_mirror_etc1
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_nearest_mirror_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_nearest_repeat_etc1
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_nearest_repeat_l8
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_nearest_repeat_rgb888
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_nearest_repeat_rgba4444
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_nearest_repeat_rgba8888
dEQP-GLES2.functional.texture.mipmap.2d.affine.linear_linear_repeat
dEQP-GLES2.functional.texture.mipmap.2d.affine.nearest_linear_clamp
dEQP-GLES2.functional.texture.mipmap.2d.affine.nearest_linear_mirror
dEQP-GLES2.functional.texture.mipmap.2d.affine.nearest_linear_repeat
dEQP-GLES2.functional.texture.mipmap.2d.basic.linear_linear_repeat
dEQP-GLES2.functional.texture.mipmap.2d.basic.linear_linear_repeat_non_square
dEQP-GLES2.functional.texture.mipmap.2d.basic.nearest_linear_clamp
dEQP-GLES2.functional.texture.mipmap.2d.basic.nearest_linear_clamp_non_square
dEQP-GLES2.functional.texture.mipmap.2d.basic.nearest_linear_mirror
dEQP-GLES2.functional.texture.mipmap.2d.basic.nearest_linear_mirror_non_square
dEQP-GLES2.functional.texture.mipmap.2d.basic.nearest_linear_repeat
dEQP-GLES2.functional.texture.mipmap.2d.basic.nearest_linear_repeat_non_square
dEQP-GLES2.functional.texture.mipmap.2d.projected.linear_linear_repeat
dEQP-GLES2.functional.texture.mipmap.2d.projected.nearest_linear_clamp
dEQP-GLES2.functional.texture.mipmap.2d.projected.nearest_linear_mirror
dEQP-GLES2.functional.texture.mipmap.2d.projected.nearest_linear_repeat
dEQP-GLES2.functional.texture.mipmap.cube.basic.linear_linear
dEQP-GLES2.functional.texture.mipmap.cube.basic.linear_nearest
dEQP-GLES2.functional.texture.mipmap.cube.bias.linear_linear
dEQP-GLES2.functional.texture.mipmap.cube.bias.linear_nearest
dEQP-GLES2.functional.texture.mipmap.cube.projected.linear_linear
dEQP-GLES2.functional.texture.mipmap.cube.projected.linear_nearest
dEQP-GLES2.functional.texture.vertex.2d.filtering.linear_mipmap_linear_linear_clamp
dEQP-GLES2.functional.texture.vertex.2d.filtering.linear_mipmap_linear_linear_mirror
dEQP-GLES2.functional.texture.vertex.2d.filtering.linear_mipmap_linear_linear_repeat
dEQP-GLES2.functional.texture.vertex.2d.filtering.linear_mipmap_linear_nearest_clamp
dEQP-GLES2.functional.texture.vertex.2d.filtering.linear_mipmap_linear_nearest_mirror
dEQP-GLES2.functional.texture.vertex.2d.filtering.linear_mipmap_linear_nearest_repeat
dEQP-GLES2.functional.texture.vertex.2d.filtering.nearest_mipmap_linear_linear_clamp
dEQP-GLES2.functional.texture.vertex.2d.filtering.nearest_mipmap_linear_linear_mirror
dEQP-GLES2.functional.texture.vertex.2d.filtering.nearest_mipmap_linear_linear_repeat
dEQP-GLES2.functional.texture.vertex.2d.filtering.nearest_mipmap_linear_nearest_clamp
dEQP-GLES2.functional.texture.vertex.2d.filtering.nearest_mipmap_linear_nearest_mirror
dEQP-GLES2.functional.texture.vertex.2d.filtering.nearest_mipmap_linear_nearest_repeat
dEQP-GLES2.functional.texture.vertex.2d.wrap.clamp_clamp
dEQP-GLES2.functional.texture.vertex.2d.wrap.clamp_mirror
dEQP-GLES2.functional.texture.vertex.2d.wrap.clamp_repeat
dEQP-GLES2.functional.texture.vertex.2d.wrap.mirror_clamp
dEQP-GLES2.functional.texture.vertex.2d.wrap.mirror_mirror
dEQP-GLES2.functional.texture.vertex.2d.wrap.mirror_repeat
dEQP-GLES2.functional.texture.vertex.2d.wrap.repeat_clamp
dEQP-GLES2.functional.texture.vertex.2d.wrap.repeat_mirror
dEQP-GLES2.functional.texture.vertex.2d.wrap.repeat_repeat
dEQP-GLES2.functional.texture.vertex.cube.filtering.linear_mipmap_linear_linear_clamp
dEQP-GLES2.functional.texture.vertex.cube.filtering.linear_mipmap_linear_linear_mirror
dEQP-GLES2.functional.texture.vertex.cube.filtering.linear_mipmap_linear_linear_repeat
dEQP-GLES2.functional.texture.vertex.cube.filtering.linear_mipmap_linear_nearest_clamp
dEQP-GLES2.functional.texture.vertex.cube.filtering.linear_mipmap_linear_nearest_mirror
dEQP-GLES2.functional.texture.vertex.cube.filtering.linear_mipmap_linear_nearest_repeat
dEQP-GLES2.functional.texture.vertex.cube.filtering.nearest_mipmap_linear_linear_clamp
dEQP-GLES2.functional.texture.vertex.cube.filtering.nearest_mipmap_linear_linear_mirror
dEQP-GLES2.functional.texture.vertex.cube.filtering.nearest_mipmap_linear_linear_repeat
dEQP-GLES2.functional.texture.vertex.cube.filtering.nearest_mipmap_linear_nearest_clamp
dEQP-GLES2.functional.texture.vertex.cube.filtering.nearest_mipmap_linear_nearest_mirror
dEQP-GLES2.functional.texture.vertex.cube.filtering.nearest_mipmap_linear_nearest_repeat
dEQP-GLES2.functional.texture.vertex.cube.wrap.clamp_clamp
dEQP-GLES2.functional.texture.vertex.cube.wrap.clamp_mirror
dEQP-GLES2.functional.texture.vertex.cube.wrap.clamp_repeat
dEQP-GLES2.functional.texture.vertex.cube.wrap.mirror_clamp
dEQP-GLES2.functional.texture.vertex.cube.wrap.mirror_mirror
dEQP-GLES2.functional.texture.vertex.cube.wrap.mirror_repeat
dEQP-GLES2.functional.texture.vertex.cube.wrap.repeat_clamp
dEQP-GLES2.functional.texture.vertex.cube.wrap.repeat_mirror
dEQP-GLES2.functional.texture.vertex.cube.wrap.repeat_repeat

View File

@@ -1,728 +0,0 @@
dEQP-GLES2.functional.depth_range.write.0_8_to_third Fail
dEQP-GLES2.functional.depth_range.write.clamp_both Fail
dEQP-GLES2.functional.depth_range.write.clamp_far Fail
dEQP-GLES2.functional.depth_range.write.clamp_near Fail
dEQP-GLES2.functional.depth_range.write.default Fail
dEQP-GLES2.functional.depth_range.write.half_to_half Fail
dEQP-GLES2.functional.depth_range.write.half_to_one Fail
dEQP-GLES2.functional.depth_range.write.half_to_zero Fail
dEQP-GLES2.functional.depth_range.write.one_to_half Fail
dEQP-GLES2.functional.depth_range.write.one_to_one Fail
dEQP-GLES2.functional.depth_range.write.reverse Fail
dEQP-GLES2.functional.depth_range.write.third_to_0_8 Fail
dEQP-GLES2.functional.depth_range.write.zero_to_half Fail
dEQP-GLES2.functional.depth_stencil_clear.depth Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_scissored Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_scissored_masked Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil_masked Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil_scissored Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil_scissored_masked Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgb565_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgb565_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgb5_a1_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgb5_a1_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgba4_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgba4_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_tex2d_rgba_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_tex2d_rgba_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_tex2d_rgb_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_tex2d_rgb_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgb565_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgb565_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgb5_a1_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgb5_a1_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgba4_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgba4_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_tex2d_rgba_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_tex2d_rgba_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_tex2d_rgb_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_tex2d_rgb_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.rbo_rgb565_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.tex2d_rgba_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.tex2d_rgb_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.rbo_rgb565_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.tex2d_rgba_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.tex2d_rgb_depth_component16 Fail
dEQP-GLES2.functional.fragment_ops.blend.equation_src_func_dst_func.add_dst_color_one_minus_src_color Fail
dEQP-GLES2.functional.fragment_ops.blend.equation_src_func_dst_func.reverse_subtract_zero_dst_alpha Fail
dEQP-GLES2.functional.fragment_ops.blend.equation_src_func_dst_func.reverse_subtract_zero_dst_color Fail
dEQP-GLES2.functional.fragment_ops.blend.equation_src_func_dst_func.reverse_subtract_zero_one Fail
dEQP-GLES2.functional.fragment_ops.blend.rgb_func_alpha_func.dst.one_minus_src_color_one_minus_src_alpha Fail
dEQP-GLES2.functional.fragment_ops.blend.rgb_func_alpha_func.dst.one_minus_src_color_one_minus_src_color Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.0 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.10 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.11 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.12 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.13 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.14 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.15 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.16 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.17 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.18 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.19 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.1 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.20 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.21 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.22 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.23 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.24 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.2 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.3 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.4 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.5 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.6 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.7 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.8 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.9 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.write_mask.both Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.write_mask.depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.write_mask.stencil Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.11 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.13 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.15 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.17 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.18 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.19 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.20 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.22 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.26 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.39 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.42 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.44 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.47 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.48 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.57 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.60 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.61 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.64 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.68 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.72 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.75 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.77 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.79 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.8 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.93 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.98 Fail
dEQP-GLES2.functional.fragment_ops.random.0 Fail
dEQP-GLES2.functional.fragment_ops.random.11 Fail
dEQP-GLES2.functional.fragment_ops.random.19 Fail
dEQP-GLES2.functional.fragment_ops.random.24 Fail
dEQP-GLES2.functional.fragment_ops.random.25 Fail
dEQP-GLES2.functional.fragment_ops.random.32 Fail
dEQP-GLES2.functional.fragment_ops.random.37 Fail
dEQP-GLES2.functional.fragment_ops.random.3 Fail
dEQP-GLES2.functional.fragment_ops.random.45 Fail
dEQP-GLES2.functional.fragment_ops.random.48 Fail
dEQP-GLES2.functional.fragment_ops.random.53 Fail
dEQP-GLES2.functional.fragment_ops.random.56 Fail
dEQP-GLES2.functional.fragment_ops.random.63 Fail
dEQP-GLES2.functional.fragment_ops.random.65 Fail
dEQP-GLES2.functional.fragment_ops.random.66 Fail
dEQP-GLES2.functional.fragment_ops.random.67 Fail
dEQP-GLES2.functional.fragment_ops.random.68 Fail
dEQP-GLES2.functional.fragment_ops.random.6 Fail
dEQP-GLES2.functional.fragment_ops.random.72 Fail
dEQP-GLES2.functional.fragment_ops.random.75 Fail
dEQP-GLES2.functional.fragment_ops.random.81 Fail
dEQP-GLES2.functional.fragment_ops.random.87 Fail
dEQP-GLES2.functional.fragment_ops.random.94 Fail
dEQP-GLES2.functional.fragment_ops.random.96 Fail
dEQP-GLES2.functional.polygon_offset.default_render_with_units Fail
dEQP-GLES2.functional.polygon_offset.fixed16_factor_1_slope Fail
dEQP-GLES2.functional.polygon_offset.fixed16_render_with_units Fail
dEQP-GLES2.functional.shaders.scoping.valid.local_variable_hides_function_parameter_fragment Fail
dEQP-GLES2.functional.shaders.scoping.valid.local_variable_hides_function_parameter_vertex Fail

View File

@@ -1,63 +0,0 @@
# Note: skips lists for CI are just a list of lines that, when
# non-zero-length and not starting with '#', will regex match to
# delete lines from the test list. Be careful.
# Skip the perf/stress tests to keep runtime manageable
dEQP-GLES[0-9]*.performance
dEQP-GLES[0-9]*.stress
# These are really slow on tiling architectures (including llvmpipe).
dEQP-GLES[0-9]*.functional.flush_finish
dEQP-GLES2.functional.fbo.render.depth.*
dEQP-GLES2.functional.clipping.triangle_vertex.clip_three.clip_neg_x_neg_z_and_pos_x_pos_z_and_neg_x_neg_y_pos_z
dEQP-GLES2.functional.clipping.triangle_vertex.clip_three.clip_pos_y_pos_z_and_neg_x_neg_y_pos_z_and_pos_x_pos_y_neg_z
dEQP-GLES2.functional.fbo.render.color.blend_rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.color.blend_rbo_rgb5_a1_depth_component16
dEQP-GLES2.functional.fbo.render.color.blend_rbo_rgba4
dEQP-GLES2.functional.fbo.render.color.blend_rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.color.blend_npot_rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.color.blend_npot_rbo_rgb5_a1_depth_component16
dEQP-GLES2.functional.fbo.render.color.blend_npot_rbo_rgba4
dEQP-GLES2.functional.fbo.render.color.blend_npot_rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgb5_a1_depth_component16
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgb5_a1_stencil_index8
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.recreate_depthbuffer.*
dEQP-GLES2.functional.fbo.render.recreate_stencilbuffer.*
dEQP-GLES2.functional.fbo.render.shared_colorbuffer_clear.rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.shared_colorbuffer_clear.rbo_rgba4
dEQP-GLES2.functional.fbo.render.shared_colorbuffer_clear.tex2d_rgb
dEQP-GLES2.functional.fbo.render.shared_colorbuffer_clear.tex2d_rgba
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.rbo_rgba4
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.rbo_rgb5_a1_depth_component16
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.stencil_clear.rbo_rgb5_a1_stencil_index8
dEQP-GLES2.functional.fbo.render.stencil.npot_rbo_rgb5_a1_stencil_index8
dEQP-GLES2.functional.fbo.render.stencil.npot_rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.stencil.rbo_rgb5_a1_stencil_index8
dEQP-GLES2.functional.fbo.render.stencil.rbo_rgba4_stencil_index8
dEQP-GLES2.functional.lifetime.attach.deleted_input.renderbuffer_framebuffer
dEQP-GLES2.functional.lifetime.attach.deleted_output.renderbuffer_framebuffer
dEQP-GLES2.functional.polygon_offset.fixed16_factor_0_slope
dEQP-GLES2.functional.polygon_offset.fixed16_factor_1_slope
dEQP-GLES2.functional.shaders.invariance.highp.loop_4
dEQP-GLES2.functional.shaders.matrix.mul.dynamic_highp_mat4_vec4_vertex
dEQP-GLES2.functional.shaders.matrix.mul.dynamic_highp_vec4_mat4_fragment
dEQP-GLES2.functional.shaders.operator.common_functions.smoothstep.mediump_vec3_vertex
dEQP-GLES2.functional.shaders.random.all_features.fragment.12
dEQP-GLES2.functional.shaders.random.all_features.fragment.37
dEQP-GLES2.functional.texture.units.2_units.mixed.1
dEQP-GLES2.functional.texture.units.2_units.mixed.3
dEQP-GLES2.functional.texture.units.2_units.only_2d.2
dEQP-GLES2.functional.texture.units.4_units.mixed.5
dEQP-GLES2.functional.texture.units.4_units.only_2d.0
dEQP-GLES2.functional.texture.units.8_units.only_cube.2
dEQP-GLES2.functional.texture.units.all_units.mixed.6
dEQP-GLES2.functional.texture.units.all_units.only_cube.4
dEQP-GLES2.functional.texture.units.all_units.only_cube.7
dEQP-GLES2.functional.texture.units.all_units.only_cube.8

View File

@@ -1,722 +0,0 @@
dEQP-GLES2.functional.depth_range.write.0_8_to_third Fail
dEQP-GLES2.functional.depth_range.write.clamp_both Fail
dEQP-GLES2.functional.depth_range.write.clamp_far Fail
dEQP-GLES2.functional.depth_range.write.clamp_near Fail
dEQP-GLES2.functional.depth_range.write.default Fail
dEQP-GLES2.functional.depth_range.write.half_to_half Fail
dEQP-GLES2.functional.depth_range.write.half_to_one Fail
dEQP-GLES2.functional.depth_range.write.half_to_zero Fail
dEQP-GLES2.functional.depth_range.write.one_to_half Fail
dEQP-GLES2.functional.depth_range.write.one_to_one Fail
dEQP-GLES2.functional.depth_range.write.reverse Fail
dEQP-GLES2.functional.depth_range.write.third_to_0_8 Fail
dEQP-GLES2.functional.depth_range.write.zero_to_half Fail
dEQP-GLES2.functional.depth_stencil_clear.depth Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_scissored Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_scissored_masked Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil_masked Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil_scissored Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil_scissored_masked Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgb565_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgb565_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgb5_a1_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgb5_a1_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgba4_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgba4_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_tex2d_rgba_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_tex2d_rgba_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_tex2d_rgb_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_tex2d_rgb_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgb565_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgb565_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgb5_a1_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgb5_a1_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgba4_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgba4_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_tex2d_rgba_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_tex2d_rgba_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_tex2d_rgb_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_tex2d_rgb_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.rbo_rgb565_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.tex2d_rgba_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.tex2d_rgb_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.rbo_rgb565_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.tex2d_rgba_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.tex2d_rgb_depth_component16 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.0 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.10 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.11 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.12 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.13 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.14 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.15 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.16 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.17 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.18 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.19 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.1 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.20 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.21 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.22 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.23 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.24 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.2 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.3 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.4 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.5 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.6 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.7 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.8 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.9 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.write_mask.both Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.write_mask.depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.write_mask.stencil Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.11 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.13 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.15 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.17 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.18 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.19 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.20 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.22 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.26 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.39 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.42 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.44 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.47 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.48 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.57 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.60 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.61 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.64 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.68 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.72 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.75 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.77 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.79 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.8 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.93 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.98 Fail
dEQP-GLES2.functional.fragment_ops.random.0 Fail
dEQP-GLES2.functional.fragment_ops.random.11 Fail
dEQP-GLES2.functional.fragment_ops.random.19 Fail
dEQP-GLES2.functional.fragment_ops.random.24 Fail
dEQP-GLES2.functional.fragment_ops.random.25 Fail
dEQP-GLES2.functional.fragment_ops.random.32 Fail
dEQP-GLES2.functional.fragment_ops.random.37 Fail
dEQP-GLES2.functional.fragment_ops.random.3 Fail
dEQP-GLES2.functional.fragment_ops.random.45 Fail
dEQP-GLES2.functional.fragment_ops.random.48 Fail
dEQP-GLES2.functional.fragment_ops.random.53 Fail
dEQP-GLES2.functional.fragment_ops.random.56 Fail
dEQP-GLES2.functional.fragment_ops.random.63 Fail
dEQP-GLES2.functional.fragment_ops.random.65 Fail
dEQP-GLES2.functional.fragment_ops.random.66 Fail
dEQP-GLES2.functional.fragment_ops.random.67 Fail
dEQP-GLES2.functional.fragment_ops.random.68 Fail
dEQP-GLES2.functional.fragment_ops.random.6 Fail
dEQP-GLES2.functional.fragment_ops.random.72 Fail
dEQP-GLES2.functional.fragment_ops.random.75 Fail
dEQP-GLES2.functional.fragment_ops.random.81 Fail
dEQP-GLES2.functional.fragment_ops.random.87 Fail
dEQP-GLES2.functional.fragment_ops.random.94 Fail
dEQP-GLES2.functional.fragment_ops.random.96 Fail
dEQP-GLES2.functional.polygon_offset.default_render_with_units Fail
dEQP-GLES2.functional.polygon_offset.fixed16_factor_1_slope Fail
dEQP-GLES2.functional.polygon_offset.fixed16_render_with_units Fail
dEQP-GLES2.functional.shaders.scoping.valid.local_variable_hides_function_parameter_fragment Fail
dEQP-GLES2.functional.shaders.scoping.valid.local_variable_hides_function_parameter_vertex Fail

View File

@@ -1,63 +0,0 @@
# Note: skips lists for CI are just a list of lines that, when
# non-zero-length and not starting with '#', will regex match to
# delete lines from the test list. Be careful.
# Skip the perf/stress tests to keep runtime manageable
dEQP-GLES[0-9]*.performance
dEQP-GLES[0-9]*.stress
# These are really slow on tiling architectures (including llvmpipe).
dEQP-GLES[0-9]*.functional.flush_finish
dEQP-GLES2.functional.fbo.render.depth.*
dEQP-GLES2.functional.clipping.triangle_vertex.clip_three.clip_neg_x_neg_z_and_pos_x_pos_z_and_neg_x_neg_y_pos_z
dEQP-GLES2.functional.clipping.triangle_vertex.clip_three.clip_pos_y_pos_z_and_neg_x_neg_y_pos_z_and_pos_x_pos_y_neg_z
dEQP-GLES2.functional.fbo.render.color.blend_rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.color.blend_rbo_rgb5_a1_depth_component16
dEQP-GLES2.functional.fbo.render.color.blend_rbo_rgba4
dEQP-GLES2.functional.fbo.render.color.blend_rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.color.blend_npot_rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.color.blend_npot_rbo_rgb5_a1_depth_component16
dEQP-GLES2.functional.fbo.render.color.blend_npot_rbo_rgba4
dEQP-GLES2.functional.fbo.render.color.blend_npot_rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgb5_a1_depth_component16
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgb5_a1_stencil_index8
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.recreate_depthbuffer.*
dEQP-GLES2.functional.fbo.render.recreate_stencilbuffer.*
dEQP-GLES2.functional.fbo.render.shared_colorbuffer_clear.rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.shared_colorbuffer_clear.rbo_rgba4
dEQP-GLES2.functional.fbo.render.shared_colorbuffer_clear.tex2d_rgb
dEQP-GLES2.functional.fbo.render.shared_colorbuffer_clear.tex2d_rgba
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.rbo_rgba4
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.rbo_rgb5_a1_depth_component16
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.stencil_clear.rbo_rgb5_a1_stencil_index8
dEQP-GLES2.functional.fbo.render.stencil.npot_rbo_rgb5_a1_stencil_index8
dEQP-GLES2.functional.fbo.render.stencil.npot_rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.stencil.rbo_rgb5_a1_stencil_index8
dEQP-GLES2.functional.fbo.render.stencil.rbo_rgba4_stencil_index8
dEQP-GLES2.functional.lifetime.attach.deleted_input.renderbuffer_framebuffer
dEQP-GLES2.functional.lifetime.attach.deleted_output.renderbuffer_framebuffer
dEQP-GLES2.functional.polygon_offset.fixed16_factor_0_slope
dEQP-GLES2.functional.polygon_offset.fixed16_factor_1_slope
dEQP-GLES2.functional.shaders.invariance.highp.loop_4
dEQP-GLES2.functional.shaders.matrix.mul.dynamic_highp_mat4_vec4_vertex
dEQP-GLES2.functional.shaders.matrix.mul.dynamic_highp_vec4_mat4_fragment
dEQP-GLES2.functional.shaders.operator.common_functions.smoothstep.mediump_vec3_vertex
dEQP-GLES2.functional.shaders.random.all_features.fragment.12
dEQP-GLES2.functional.shaders.random.all_features.fragment.37
dEQP-GLES2.functional.texture.units.2_units.mixed.1
dEQP-GLES2.functional.texture.units.2_units.mixed.3
dEQP-GLES2.functional.texture.units.2_units.only_2d.2
dEQP-GLES2.functional.texture.units.4_units.mixed.5
dEQP-GLES2.functional.texture.units.4_units.only_2d.0
dEQP-GLES2.functional.texture.units.8_units.only_cube.2
dEQP-GLES2.functional.texture.units.all_units.mixed.6
dEQP-GLES2.functional.texture.units.all_units.only_cube.4
dEQP-GLES2.functional.texture.units.all_units.only_cube.7
dEQP-GLES2.functional.texture.units.all_units.only_cube.8

View File

@@ -1,136 +0,0 @@
#!/bin/bash
set -ex
DEQP_OPTIONS=(--deqp-surface-width=256 --deqp-surface-height=256)
DEQP_OPTIONS+=(--deqp-surface-type=pbuffer)
DEQP_OPTIONS+=(--deqp-gl-config-name=rgba8888d24s8ms0)
DEQP_OPTIONS+=(--deqp-visibility=hidden)
DEQP_OPTIONS+=(--deqp-log-images=disable)
DEQP_OPTIONS+=(--deqp-crashhandler=enable)
# It would be nice to be able to enable the watchdog, so that hangs in a test
# don't need to wait the full hour for the run to time out. However, some
# shaders end up taking long enough to compile
# (dEQP-GLES31.functional.ubo.random.all_per_block_buffers.20 for example)
# that they'll sporadically trigger the watchdog.
#DEQP_OPTIONS+=(--deqp-watchdog=enable)
if [ -z "$DEQP_VER" ]; then
echo 'DEQP_VER must be set to something like "gles2" or "gles31" for the test run'
exit 1
fi
if [ -z "$DEQP_SKIPS" ]; then
echo 'DEQP_SKIPS must be set to something like "deqp-default-skips.txt"'
exit 1
fi
# Prep the expected failure list
if [ -n "$DEQP_EXPECTED_FAILS" ]; then
export DEQP_EXPECTED_FAILS=`pwd`/artifacts/$DEQP_EXPECTED_FAILS
else
export DEQP_EXPECTED_FAILS=/tmp/expect-no-failures.txt
touch $DEQP_EXPECTED_FAILS
fi
sort < $DEQP_EXPECTED_FAILS > /tmp/expected-fails.txt
# Fix relative paths on inputs.
export DEQP_SKIPS=`pwd`/artifacts/$DEQP_SKIPS
# Be a good citizen on the shared runners.
export LP_NUM_THREADS=4
# Set up the driver environment.
export LD_LIBRARY_PATH=`pwd`/install/lib/
export EGL_PLATFORM=surfaceless
# the runner was failing to look for libkms in /usr/local/lib for some reason
# I never figured out.
export LD_LIBRARY_PATH=$LD_LIBRARY_PATH:/usr/local/lib
RESULTS=`pwd`/results
mkdir -p $RESULTS
cd /deqp/modules/$DEQP_VER
# Generate test case list file
cp /deqp/mustpass/$DEQP_VER-master.txt /tmp/case-list.txt
# Note: not using sorted input and comm, becuase I want to run the tests in
# the same order that dEQP would.
while read -r line; do
if echo "$line" | grep -q '^[^#]'; then
sed -i "/$line/d" /tmp/case-list.txt
fi
done < $DEQP_SKIPS
# If the job is parallel, take the corresponding fraction of the caselist.
# Note: N~M is a gnu sed extension to match every nth line (first line is #1).
if [ -n "$CI_NODE_INDEX" ]; then
sed -ni $CI_NODE_INDEX~$CI_NODE_TOTAL"p" /tmp/case-list.txt
fi
if [ ! -s /tmp/case-list.txt ]; then
echo "Caselist generation failed"
exit 1
fi
# Cannot use tee because dash doesn't have pipefail
touch /tmp/result.txt
tail -f /tmp/result.txt &
./deqp-$DEQP_VER "${DEQP_OPTIONS[@]}" --deqp-log-filename=$RESULTS/results.qpa --deqp-caselist-file=/tmp/case-list.txt >> /tmp/result.txt
DEQP_EXITCODE=$?
sed -ne \
'/StatusCode="Fail"/{x;p}; s/#beginTestCaseResult //; T; h' \
$RESULTS/results.qpa \
> /tmp/unsorted-fails.txt
# Scrape out the renderer that the test run used, so we can validate that the
# right driver was used.
if grep -q "dEQP-.*.info.renderer" /tmp/case-list.txt; then
# This is an ugly dependency on the .qpa format: Print 3 lines after the
# match, which happens to contain the result.
RENDERER=`sed -n '/#beginTestCaseResult dEQP-.*.info.renderer/{n;n;n;p}' $RESULTS/results.qpa | sed -n -E "s|<Text>(.*)</Text>|\1|p"`
echo "GL_RENDERER for this test run: $RENDERER"
if [ -n "$DEQP_RENDERER_MATCH" ]; then
echo $RENDERER | grep -q $DEQP_RENDERER_MATCH > /dev/null
fi
fi
if grep -q "dEQP-.*.info.version" /tmp/case-list.txt; then
# This is an ugly dependency on the .qpa format: Print 3 lines after the
# match, which happens to contain the result.
VERSION=`sed -n '/#beginTestCaseResult dEQP-.*.info.version/{n;n;n;p}' $RESULTS/results.qpa | sed -n -E "s|<Text>(.*)</Text>|\1|p"`
echo "Driver version tested: $VERSION"
fi
if [ $DEQP_EXITCODE -ne 0 ]; then
exit $DEQP_EXITCODE
fi
sort < /tmp/unsorted-fails.txt > $RESULTS/fails.txt
comm -23 $RESULTS/fails.txt /tmp/expected-fails.txt > /tmp/new-fails.txt
if [ -s /tmp/new-fails.txt ]; then
echo "Unexpected failures:"
cat /tmp/new-fails.txt
exit 1
else
echo "No new failures"
fi
sort /tmp/case-list.txt > /tmp/sorted-case-list.txt
comm -12 /tmp/sorted-case-list.txt /tmp/expected-fails.txt > /tmp/expected-fails-in-caselist.txt
comm -13 $RESULTS/fails.txt /tmp/expected-fails-in-caselist.txt > /tmp/new-passes.txt
if [ -s /tmp/new-passes.txt ]; then
echo "Unexpected passes, please update $DEQP_EXPECTED_FAILS (or add flaky tests to $DEQP_SKIPS):"
cat /tmp/new-passes.txt
exit 1
else
echo "No new passes"
fi

View File

@@ -1,445 +0,0 @@
dEQP-GLES2.functional.clipping.line.wide_line_clip_viewport_center
dEQP-GLES2.functional.clipping.line.wide_line_clip_viewport_corner
dEQP-GLES2.functional.clipping.point.wide_point_clip
dEQP-GLES2.functional.clipping.point.wide_point_clip_viewport_center
dEQP-GLES2.functional.clipping.point.wide_point_clip_viewport_corner
dEQP-GLES2.functional.clipping.triangle_vertex.clip_two.clip_neg_y_neg_z_and_neg_x_neg_y_pos_z
dEQP-GLES2.functional.clipping.triangle_vertex.clip_two.clip_pos_y_pos_z_and_neg_x_neg_y_neg_z
dEQP-GLES2.functional.polygon_offset.default_displacement_with_units
dEQP-GLES2.functional.polygon_offset.fixed16_displacement_with_units
dEQP-GLES2.functional.rasterization.interpolation.basic.line_loop_wide
dEQP-GLES2.functional.rasterization.interpolation.basic.line_strip_wide
dEQP-GLES2.functional.rasterization.interpolation.basic.lines_wide
dEQP-GLES2.functional.rasterization.interpolation.projected.line_loop_wide
dEQP-GLES2.functional.rasterization.interpolation.projected.line_strip_wide
dEQP-GLES2.functional.rasterization.interpolation.projected.lines_wide
dEQP-GLES2.functional.rasterization.limits.points
dEQP-GLES2.functional.rasterization.primitives.points
dEQP-GLES3.functional.clipping.line.wide_line_clip_viewport_center
dEQP-GLES3.functional.clipping.line.wide_line_clip_viewport_corner
dEQP-GLES3.functional.clipping.point.wide_point_clip
dEQP-GLES3.functional.clipping.point.wide_point_clip_viewport_center
dEQP-GLES3.functional.clipping.point.wide_point_clip_viewport_corner
dEQP-GLES3.functional.clipping.triangle_vertex.clip_two.clip_neg_y_neg_z_and_neg_x_neg_y_pos_z
dEQP-GLES3.functional.clipping.triangle_vertex.clip_two.clip_pos_y_pos_z_and_neg_x_neg_y_neg_z
dEQP-GLES3.functional.draw.random.124
dEQP-GLES3.functional.fbo.depth.depth_test_clamp.depth24_stencil8
dEQP-GLES3.functional.fbo.depth.depth_test_clamp.depth32f_stencil8
dEQP-GLES3.functional.fbo.depth.depth_test_clamp.depth_component16
dEQP-GLES3.functional.fbo.depth.depth_test_clamp.depth_component24
dEQP-GLES3.functional.fbo.depth.depth_test_clamp.depth_component32f
dEQP-GLES3.functional.fbo.depth.depth_write_clamp.depth32f_stencil8
dEQP-GLES3.functional.fbo.depth.depth_write_clamp.depth_component32f
dEQP-GLES3.functional.fbo.invalidate.sub.unbind_blit_msaa_color
dEQP-GLES3.functional.fbo.invalidate.sub.unbind_blit_msaa_depth
dEQP-GLES3.functional.fbo.invalidate.sub.unbind_blit_msaa_depth_stencil
dEQP-GLES3.functional.fbo.invalidate.sub.unbind_blit_msaa_stencil
dEQP-GLES3.functional.fbo.invalidate.whole.unbind_blit_msaa_color
dEQP-GLES3.functional.fbo.invalidate.whole.unbind_blit_msaa_depth
dEQP-GLES3.functional.fbo.invalidate.whole.unbind_blit_msaa_depth_stencil
dEQP-GLES3.functional.fbo.invalidate.whole.unbind_blit_msaa_stencil
dEQP-GLES3.functional.fbo.msaa.2_samples.depth24_stencil8
dEQP-GLES3.functional.fbo.msaa.2_samples.depth32f_stencil8
dEQP-GLES3.functional.fbo.msaa.2_samples.depth_component16
dEQP-GLES3.functional.fbo.msaa.2_samples.depth_component24
dEQP-GLES3.functional.fbo.msaa.2_samples.depth_component32f
dEQP-GLES3.functional.fbo.msaa.2_samples.r11f_g11f_b10f
dEQP-GLES3.functional.fbo.msaa.2_samples.r16f
dEQP-GLES3.functional.fbo.msaa.2_samples.r8
dEQP-GLES3.functional.fbo.msaa.2_samples.rg16f
dEQP-GLES3.functional.fbo.msaa.2_samples.rg8
dEQP-GLES3.functional.fbo.msaa.2_samples.rgb10_a2
dEQP-GLES3.functional.fbo.msaa.2_samples.rgb565
dEQP-GLES3.functional.fbo.msaa.2_samples.rgb5_a1
dEQP-GLES3.functional.fbo.msaa.2_samples.rgb8
dEQP-GLES3.functional.fbo.msaa.2_samples.rgba4
dEQP-GLES3.functional.fbo.msaa.2_samples.rgba8
dEQP-GLES3.functional.fbo.msaa.2_samples.srgb8_alpha8
dEQP-GLES3.functional.fbo.msaa.2_samples.stencil_index8
dEQP-GLES3.functional.fbo.msaa.4_samples.depth24_stencil8
dEQP-GLES3.functional.fbo.msaa.4_samples.depth32f_stencil8
dEQP-GLES3.functional.fbo.msaa.4_samples.depth_component16
dEQP-GLES3.functional.fbo.msaa.4_samples.depth_component24
dEQP-GLES3.functional.fbo.msaa.4_samples.depth_component32f
dEQP-GLES3.functional.fbo.msaa.4_samples.r11f_g11f_b10f
dEQP-GLES3.functional.fbo.msaa.4_samples.r16f
dEQP-GLES3.functional.fbo.msaa.4_samples.r8
dEQP-GLES3.functional.fbo.msaa.4_samples.rg16f
dEQP-GLES3.functional.fbo.msaa.4_samples.rg8
dEQP-GLES3.functional.fbo.msaa.4_samples.rgb10_a2
dEQP-GLES3.functional.fbo.msaa.4_samples.rgb565
dEQP-GLES3.functional.fbo.msaa.4_samples.rgb5_a1
dEQP-GLES3.functional.fbo.msaa.4_samples.rgb8
dEQP-GLES3.functional.fbo.msaa.4_samples.rgba4
dEQP-GLES3.functional.fbo.msaa.4_samples.rgba8
dEQP-GLES3.functional.fbo.msaa.4_samples.srgb8_alpha8
dEQP-GLES3.functional.fbo.msaa.4_samples.stencil_index8
dEQP-GLES3.functional.multisample.fbo_max_samples.proportionality_alpha_to_coverage
dEQP-GLES3.functional.multisample.fbo_max_samples.proportionality_sample_coverage
dEQP-GLES3.functional.multisample.fbo_max_samples.proportionality_sample_coverage_inverted
dEQP-GLES3.functional.multisample.fbo_max_samples.sample_coverage_invert
dEQP-GLES3.functional.negative_api.buffer.blit_framebuffer_multisample
dEQP-GLES3.functional.negative_api.buffer.read_pixels_fbo_format_mismatch
dEQP-GLES3.functional.polygon_offset.default_displacement_with_units
dEQP-GLES3.functional.polygon_offset.fixed16_displacement_with_units
dEQP-GLES3.functional.polygon_offset.fixed24_displacement_with_units
dEQP-GLES3.functional.polygon_offset.float32_displacement_with_units
dEQP-GLES3.functional.rasterization.fbo.rbo_multisample_max.interpolation.lines_wide
dEQP-GLES3.functional.rasterization.fbo.rbo_multisample_max.primitives.lines_wide
dEQP-GLES3.functional.rasterization.fbo.rbo_singlesample.interpolation.lines_wide
dEQP-GLES3.functional.rasterization.fbo.rbo_singlesample.primitives.points
dEQP-GLES3.functional.rasterization.fbo.texture_2d.interpolation.lines_wide
dEQP-GLES3.functional.rasterization.fbo.texture_2d.primitives.points
dEQP-GLES3.functional.rasterization.interpolation.basic.line_loop_wide
dEQP-GLES3.functional.rasterization.interpolation.basic.line_strip_wide
dEQP-GLES3.functional.rasterization.interpolation.basic.lines_wide
dEQP-GLES3.functional.rasterization.interpolation.projected.line_loop_wide
dEQP-GLES3.functional.rasterization.interpolation.projected.line_strip_wide
dEQP-GLES3.functional.rasterization.interpolation.projected.lines_wide
dEQP-GLES3.functional.rasterization.primitives.points
dEQP-GLES3.functional.rasterizer_discard.basic.write_depth_points
dEQP-GLES3.functional.rasterizer_discard.basic.write_stencil_points
dEQP-GLES3.functional.rasterizer_discard.fbo.write_depth_points
dEQP-GLES3.functional.rasterizer_discard.fbo.write_stencil_points
dEQP-GLES3.functional.rasterizer_discard.scissor.write_depth_points
dEQP-GLES3.functional.rasterizer_discard.scissor.write_stencil_points
dEQP-GLES3.functional.shaders.derivate.dfdx.fastest.fbo_msaa4.float_highp
dEQP-GLES3.functional.shaders.derivate.dfdx.fastest.fbo_msaa4.float_mediump
dEQP-GLES3.functional.shaders.derivate.dfdx.fastest.fbo_msaa4.vec2_highp
dEQP-GLES3.functional.shaders.derivate.dfdx.fastest.fbo_msaa4.vec2_mediump
dEQP-GLES3.functional.shaders.derivate.dfdx.fastest.fbo_msaa4.vec3_highp
dEQP-GLES3.functional.shaders.derivate.dfdx.fastest.fbo_msaa4.vec3_mediump
dEQP-GLES3.functional.shaders.derivate.dfdx.fastest.fbo_msaa4.vec4_highp
dEQP-GLES3.functional.shaders.derivate.dfdx.fastest.fbo_msaa4.vec4_mediump
dEQP-GLES3.functional.shaders.derivate.dfdx.fbo_msaa2.float_highp
dEQP-GLES3.functional.shaders.derivate.dfdx.fbo_msaa2.float_mediump
dEQP-GLES3.functional.shaders.derivate.dfdx.fbo_msaa2.vec2_highp
dEQP-GLES3.functional.shaders.derivate.dfdx.fbo_msaa2.vec2_mediump
dEQP-GLES3.functional.shaders.derivate.dfdx.fbo_msaa2.vec3_highp
dEQP-GLES3.functional.shaders.derivate.dfdx.fbo_msaa2.vec3_mediump
dEQP-GLES3.functional.shaders.derivate.dfdx.fbo_msaa2.vec4_highp
dEQP-GLES3.functional.shaders.derivate.dfdx.fbo_msaa2.vec4_mediump
dEQP-GLES3.functional.shaders.derivate.dfdx.fbo_msaa4.float_highp
dEQP-GLES3.functional.shaders.derivate.dfdx.fbo_msaa4.float_mediump
dEQP-GLES3.functional.shaders.derivate.dfdx.fbo_msaa4.vec2_highp
dEQP-GLES3.functional.shaders.derivate.dfdx.fbo_msaa4.vec2_mediump
dEQP-GLES3.functional.shaders.derivate.dfdx.fbo_msaa4.vec3_highp
dEQP-GLES3.functional.shaders.derivate.dfdx.fbo_msaa4.vec3_mediump
dEQP-GLES3.functional.shaders.derivate.dfdx.fbo_msaa4.vec4_highp
dEQP-GLES3.functional.shaders.derivate.dfdx.fbo_msaa4.vec4_mediump
dEQP-GLES3.functional.shaders.derivate.dfdx.nicest.fbo_msaa4.float_highp
dEQP-GLES3.functional.shaders.derivate.dfdx.nicest.fbo_msaa4.float_mediump
dEQP-GLES3.functional.shaders.derivate.dfdx.nicest.fbo_msaa4.vec2_highp
dEQP-GLES3.functional.shaders.derivate.dfdx.nicest.fbo_msaa4.vec2_mediump
dEQP-GLES3.functional.shaders.derivate.dfdx.nicest.fbo_msaa4.vec3_highp
dEQP-GLES3.functional.shaders.derivate.dfdx.nicest.fbo_msaa4.vec3_mediump
dEQP-GLES3.functional.shaders.derivate.dfdx.nicest.fbo_msaa4.vec4_highp
dEQP-GLES3.functional.shaders.derivate.dfdx.nicest.fbo_msaa4.vec4_mediump
dEQP-GLES3.functional.shaders.derivate.dfdx.texture.msaa4.float_highp
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dEQP-GLES3.functional.shaders.derivate.dfdx.texture.msaa4.vec3_highp
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dEQP-GLES3.functional.shaders.derivate.dfdx.texture.msaa4.vec4_highp
dEQP-GLES3.functional.shaders.derivate.dfdx.texture.msaa4.vec4_mediump
dEQP-GLES3.functional.shaders.derivate.dfdy.fastest.fbo_msaa4.float_highp
dEQP-GLES3.functional.shaders.derivate.dfdy.fastest.fbo_msaa4.float_mediump
dEQP-GLES3.functional.shaders.derivate.dfdy.fastest.fbo_msaa4.vec2_highp
dEQP-GLES3.functional.shaders.derivate.dfdy.fastest.fbo_msaa4.vec2_mediump
dEQP-GLES3.functional.shaders.derivate.dfdy.fastest.fbo_msaa4.vec3_highp
dEQP-GLES3.functional.shaders.derivate.dfdy.fastest.fbo_msaa4.vec3_mediump
dEQP-GLES3.functional.shaders.derivate.dfdy.fastest.fbo_msaa4.vec4_highp
dEQP-GLES3.functional.shaders.derivate.dfdy.fastest.fbo_msaa4.vec4_mediump
dEQP-GLES3.functional.shaders.derivate.dfdy.fbo_msaa2.float_highp
dEQP-GLES3.functional.shaders.derivate.dfdy.fbo_msaa2.float_mediump
dEQP-GLES3.functional.shaders.derivate.dfdy.fbo_msaa2.vec2_highp
dEQP-GLES3.functional.shaders.derivate.dfdy.fbo_msaa2.vec2_mediump
dEQP-GLES3.functional.shaders.derivate.dfdy.fbo_msaa2.vec3_highp
dEQP-GLES3.functional.shaders.derivate.dfdy.fbo_msaa2.vec3_mediump
dEQP-GLES3.functional.shaders.derivate.dfdy.fbo_msaa2.vec4_highp
dEQP-GLES3.functional.shaders.derivate.dfdy.fbo_msaa2.vec4_mediump
dEQP-GLES3.functional.shaders.derivate.dfdy.fbo_msaa4.float_highp
dEQP-GLES3.functional.shaders.derivate.dfdy.fbo_msaa4.float_mediump
dEQP-GLES3.functional.shaders.derivate.dfdy.fbo_msaa4.vec2_highp
dEQP-GLES3.functional.shaders.derivate.dfdy.fbo_msaa4.vec2_mediump
dEQP-GLES3.functional.shaders.derivate.dfdy.fbo_msaa4.vec3_highp
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dEQP-GLES3.functional.shaders.derivate.dfdy.nicest.fbo_msaa4.float_highp
dEQP-GLES3.functional.shaders.derivate.dfdy.nicest.fbo_msaa4.float_mediump
dEQP-GLES3.functional.shaders.derivate.dfdy.nicest.fbo_msaa4.vec2_highp
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dEQP-GLES3.functional.shaders.derivate.dfdy.nicest.fbo_msaa4.vec4_mediump
dEQP-GLES3.functional.shaders.derivate.dfdy.texture.msaa4.float_highp
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dEQP-GLES3.functional.shaders.derivate.fwidth.fbo_msaa2.float_highp
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dEQP-GLES3.functional.shaders.derivate.fwidth.texture.msaa4.float_highp
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dEQP-GLES3.functional.state_query.integers.max_samples_getfloat
dEQP-GLES3.functional.state_query.integers.max_samples_getinteger64
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_linear_clamp_clamp_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_linear_clamp_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_linear_clamp_mirror_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_linear_clamp_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_linear_clamp_repeat_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_linear_clamp_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_linear_mirror_clamp_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_linear_mirror_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_linear_mirror_mirror_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_linear_mirror_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_linear_mirror_repeat_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_linear_mirror_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_linear_repeat_clamp_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_linear_repeat_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_linear_repeat_mirror_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_linear_repeat_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_linear_repeat_repeat_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_linear_repeat_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_linear_linear_clamp_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_linear_linear_clamp_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_linear_linear_clamp_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_linear_linear_mirror_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_linear_linear_mirror_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_linear_linear_mirror_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_linear_linear_repeat_clamp_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_linear_linear_repeat_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_linear_linear_repeat_mirror_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_linear_linear_repeat_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_linear_linear_repeat_repeat_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_linear_linear_repeat_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_linear_nearest_repeat_clamp_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_linear_nearest_repeat_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_linear_nearest_repeat_mirror_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_linear_nearest_repeat_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_linear_nearest_repeat_repeat_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_linear_nearest_repeat_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_nearest_linear_clamp_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_nearest_linear_clamp_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_nearest_linear_clamp_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_nearest_linear_mirror_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_nearest_linear_mirror_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_nearest_linear_mirror_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_nearest_linear_repeat_clamp_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_nearest_linear_repeat_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_nearest_linear_repeat_mirror_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_nearest_linear_repeat_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_nearest_linear_repeat_repeat_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_nearest_linear_repeat_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_nearest_nearest_repeat_clamp_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_nearest_nearest_repeat_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_nearest_nearest_repeat_mirror_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_nearest_nearest_repeat_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_nearest_nearest_repeat_repeat_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_mipmap_nearest_nearest_repeat_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_nearest_clamp_clamp_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_nearest_clamp_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_nearest_clamp_mirror_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_nearest_clamp_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_nearest_clamp_repeat_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_nearest_clamp_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_nearest_mirror_clamp_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_nearest_mirror_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_nearest_mirror_mirror_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_nearest_mirror_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_nearest_mirror_repeat_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_nearest_mirror_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_nearest_repeat_clamp_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_nearest_repeat_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_nearest_repeat_mirror_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_nearest_repeat_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_nearest_repeat_repeat_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.linear_nearest_repeat_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_linear_clamp_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_linear_clamp_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_linear_clamp_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_linear_mirror_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_linear_mirror_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_linear_mirror_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_linear_repeat_clamp_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_linear_repeat_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_linear_repeat_mirror_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_linear_repeat_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_linear_repeat_repeat_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_linear_repeat_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_linear_linear_clamp_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_linear_linear_clamp_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_linear_linear_clamp_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_linear_linear_mirror_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_linear_linear_mirror_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_linear_linear_mirror_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_linear_linear_repeat_clamp_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_linear_linear_repeat_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_linear_linear_repeat_mirror_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_linear_linear_repeat_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_linear_linear_repeat_repeat_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_linear_linear_repeat_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_nearest_linear_clamp_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_nearest_linear_clamp_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_nearest_linear_clamp_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_nearest_linear_mirror_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_nearest_linear_mirror_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_nearest_linear_mirror_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_nearest_linear_repeat_clamp_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_nearest_linear_repeat_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_nearest_linear_repeat_mirror_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_nearest_linear_repeat_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_nearest_linear_repeat_repeat_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_nearest_linear_repeat_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.formats.r11f_g11f_b10f_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.r11f_g11f_b10f_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.r11f_g11f_b10f_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.r11f_g11f_b10f_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.r11f_g11f_b10f_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb10_a2_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb10_a2_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb10_a2_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb10_a2_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb10_a2_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb565_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb565_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb565_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb565_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb565_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb5_a1_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb5_a1_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb5_a1_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb5_a1_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb5_a1_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb9_e5_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb9_e5_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb9_e5_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb9_e5_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb9_e5_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba16f_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba16f_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba16f_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba16f_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba16f_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba4_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba4_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba4_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba4_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba4_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_snorm_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_snorm_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_snorm_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_snorm_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_snorm_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb8_alpha8_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb8_alpha8_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb8_alpha8_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb8_alpha8_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb8_alpha8_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb_r8_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb_r8_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb_r8_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb_r8_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb_r8_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.sizes.128x32x64_linear
dEQP-GLES3.functional.texture.filtering.3d.sizes.128x32x64_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.sizes.128x32x64_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.sizes.128x32x64_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.sizes.128x32x64_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.sizes.63x63x63_linear
dEQP-GLES3.functional.texture.filtering.3d.sizes.63x63x63_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.sizes.63x63x63_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.sizes.63x63x63_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.sizes.63x63x63_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_linear_clamp
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_linear_mirror
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_linear_repeat
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_mipmap_linear_linear_clamp
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_mipmap_linear_linear_mirror
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_mipmap_linear_linear_repeat
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_mipmap_linear_nearest_clamp
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_mipmap_linear_nearest_mirror
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_mipmap_linear_nearest_repeat
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_mipmap_nearest_linear_repeat
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_nearest_clamp
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_nearest_mirror
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_nearest_repeat
dEQP-GLES3.functional.texture.vertex.3d.filtering.nearest_linear_repeat
dEQP-GLES3.functional.texture.vertex.3d.filtering.nearest_mipmap_linear_linear_repeat
dEQP-GLES3.functional.texture.vertex.3d.filtering.nearest_mipmap_nearest_linear_repeat
dEQP-GLES3.functional.texture.vertex.3d.wrap.clamp_clamp_clamp
dEQP-GLES3.functional.texture.vertex.3d.wrap.clamp_clamp_mirror
dEQP-GLES3.functional.texture.vertex.3d.wrap.clamp_clamp_repeat
dEQP-GLES3.functional.texture.vertex.3d.wrap.clamp_mirror_mirror
dEQP-GLES3.functional.texture.vertex.3d.wrap.clamp_mirror_repeat
dEQP-GLES3.functional.texture.vertex.3d.wrap.clamp_repeat_mirror
dEQP-GLES3.functional.texture.vertex.3d.wrap.clamp_repeat_repeat
dEQP-GLES3.functional.texture.vertex.3d.wrap.mirror_clamp_clamp
dEQP-GLES3.functional.texture.vertex.3d.wrap.mirror_clamp_mirror
dEQP-GLES3.functional.texture.vertex.3d.wrap.mirror_clamp_repeat
dEQP-GLES3.functional.texture.vertex.3d.wrap.mirror_mirror_mirror
dEQP-GLES3.functional.texture.vertex.3d.wrap.mirror_mirror_repeat
dEQP-GLES3.functional.texture.vertex.3d.wrap.mirror_repeat_mirror
dEQP-GLES3.functional.texture.vertex.3d.wrap.mirror_repeat_repeat
dEQP-GLES3.functional.texture.vertex.3d.wrap.repeat_clamp_clamp
dEQP-GLES3.functional.texture.vertex.3d.wrap.repeat_clamp_mirror
dEQP-GLES3.functional.texture.vertex.3d.wrap.repeat_clamp_repeat
dEQP-GLES3.functional.texture.vertex.3d.wrap.repeat_mirror_clamp
dEQP-GLES3.functional.texture.vertex.3d.wrap.repeat_mirror_mirror
dEQP-GLES3.functional.texture.vertex.3d.wrap.repeat_mirror_repeat
dEQP-GLES3.functional.texture.vertex.3d.wrap.repeat_repeat_clamp
dEQP-GLES3.functional.texture.vertex.3d.wrap.repeat_repeat_mirror
dEQP-GLES3.functional.texture.vertex.3d.wrap.repeat_repeat_repeat
dEQP-GLES3.functional.texture.wrap.astc_8x8.repeat_repeat_linear_divisible
dEQP-GLES3.functional.texture.wrap.astc_8x8.repeat_repeat_linear_not_divisible
dEQP-GLES3.functional.texture.wrap.astc_8x8_srgb.repeat_repeat_linear_divisible
dEQP-GLES3.functional.texture.wrap.astc_8x8_srgb.repeat_repeat_linear_not_divisible
dEQP-GLES3.functional.vertex_arrays.single_attribute.normalize.int2_10_10_10.components4_quads1
dEQP-GLES3.functional.vertex_arrays.single_attribute.normalize.int2_10_10_10.components4_quads256

View File

@@ -1,58 +0,0 @@
#!/usr/bin/env python3
from jinja2 import Environment, FileSystemLoader
import argparse
device_types = {
"rk3288-veyron-jaq": {
"gpu_version": "panfrost-t760",
"boot_method": "depthcharge",
"lava_device_type": "rk3288-veyron-jaq",
"kernel_image_type": "",
},
"rk3399-gru-kevin": {
"gpu_version": "panfrost-t860",
"boot_method": "depthcharge",
"lava_device_type": "rk3399-gru-kevin",
"kernel_image_type": "",
},
"sun8i-h3-libretech-all-h3-cc": {
"gpu_version": "lima",
"boot_method": "u-boot",
"lava_device_type": "sun8i-h3-libretech-all-h3-cc",
"kernel_image_type": "type: zimage",
},
"meson-gxl-s905x-libretech-cc": {
"gpu_version": "lima",
"boot_method": "u-boot",
"lava_device_type": "meson-gxl-s905x-libretech-cc",
"kernel_image_type": "type: image",
},
}
parser = argparse.ArgumentParser()
parser.add_argument("--template")
parser.add_argument("--base-artifacts-url")
parser.add_argument("--arch")
parser.add_argument("--device-types", nargs="+")
parser.add_argument("--kernel-image-name")
args = parser.parse_args()
env = Environment(loader = FileSystemLoader('.'), trim_blocks=True, lstrip_blocks=True)
template = env.get_template(args.template)
for device_type in args.device_types:
values = {}
values['base_artifacts_url'] = args.base_artifacts_url
values['arch'] = args.arch
values['device_type'] = device_type
values['kernel_image_name'] = args.kernel_image_name
values['lava_device_type'] = device_types[device_type]['lava_device_type']
values['gpu_version'] = device_types[device_type]['gpu_version']
values['boot_method'] = device_types[device_type]['boot_method']
values['kernel_image_type'] = device_types[device_type]['kernel_image_type']
f = open('results/lava-deqp-%s.yml' % device_type, "w")
f.write(template.render(values))
f.close()

View File

@@ -1,187 +0,0 @@
#!/bin/bash
set -e
set -o xtrace
############### Install packages for building
dpkg --add-architecture ${DEBIAN_ARCH}
echo 'deb-src https://deb.debian.org/debian testing main' > /etc/apt/sources.list.d/deb-src.list
apt-get update
apt-get -y install ca-certificates
apt-get -y install --no-install-recommends \
crossbuild-essential-${DEBIAN_ARCH} \
meson \
g++ \
git \
ccache \
pkg-config \
python3-mako \
python-numpy \
python-six \
python-mako \
python3-pip \
python3-setuptools \
python3-six \
python3-wheel \
python3-jinja2 \
bison \
flex \
gettext \
cmake \
bc \
libssl-dev \
lqa \
csvkit \
curl \
unzip \
wget \
debootstrap \
procps \
qemu-user-static \
cpio \
clang-8 \
llvm-8 \
libclang-8-dev \
llvm-8-dev \
gdc-9 \
lld-8 \
nasm \
libegl1-mesa-dev \
\
libdrm-dev:${DEBIAN_ARCH} \
libx11-dev:${DEBIAN_ARCH} \
libxxf86vm-dev:${DEBIAN_ARCH} \
libexpat1-dev:${DEBIAN_ARCH} \
libsensors-dev:${DEBIAN_ARCH} \
libxfixes-dev:${DEBIAN_ARCH} \
libxdamage-dev:${DEBIAN_ARCH} \
libxext-dev:${DEBIAN_ARCH} \
x11proto-dev:${DEBIAN_ARCH} \
libx11-xcb-dev:${DEBIAN_ARCH} \
libxcb-dri2-0-dev:${DEBIAN_ARCH} \
libxcb-glx0-dev:${DEBIAN_ARCH} \
libxcb-xfixes0-dev:${DEBIAN_ARCH} \
libxcb-dri3-dev:${DEBIAN_ARCH} \
libxcb-present-dev:${DEBIAN_ARCH} \
libxcb-randr0-dev:${DEBIAN_ARCH} \
libxcb-sync-dev:${DEBIAN_ARCH} \
libxrandr-dev:${DEBIAN_ARCH} \
libxshmfence-dev:${DEBIAN_ARCH} \
libelf-dev:${DEBIAN_ARCH} \
zlib1g-dev:${DEBIAN_ARCH} \
libglvnd-core-dev:${DEBIAN_ARCH} \
libgles2-mesa-dev:${DEBIAN_ARCH} \
libegl1-mesa-dev:${DEBIAN_ARCH} \
libpng-dev:${DEBIAN_ARCH}
############### Install lavacli (remove after it's back into Debian testing)
mkdir -p lavacli
wget -qO- https://git.lavasoftware.org/lava/lavacli/-/archive/v0.9.8/lavacli-v0.9.8.tar.gz | tar -xz --strip-components=1 -C lavacli
pushd lavacli
python3 ./setup.py install
popd
############### Cross-build dEQP
mkdir -p /artifacts/rootfs/deqp
git config --global user.email "mesa@example.com"
git config --global user.name "Mesa CI"
# XXX: Use --depth 1 once we can drop the cherry-picks.
git clone \
https://github.com/KhronosGroup/VK-GL-CTS.git \
-b opengl-es-cts-3.2.5.1 \
/VK-GL-CTS
cd /VK-GL-CTS
# Fix surfaceless build
git cherry-pick -x 22f41e5e321c6dcd8569c4dad91bce89f06b3670
git cherry-pick -x 1daa8dff73161ea60ead965bd6c9f2a0a2165648
# surfaceless links against libkms and such despite not using it.
sed -i '/gbm/d' targets/surfaceless/surfaceless.cmake
sed -i '/libkms/d' targets/surfaceless/surfaceless.cmake
sed -i '/libgbm/d' targets/surfaceless/surfaceless.cmake
python3 external/fetch_sources.py
cd /artifacts/rootfs/deqp
cmake -G Ninja \
-DDEQP_TARGET=surfaceless \
-DCMAKE_BUILD_TYPE=Release \
-DCMAKE_C_COMPILER=${GCC_ARCH}-gcc \
-DCMAKE_CXX_COMPILER=${GCC_ARCH}-g++ \
/VK-GL-CTS
ninja
rm -rf /artifacts/rootfs/deqp/external
rm -rf /artifacts/rootfs/deqp/modules/gles31
rm -rf /artifacts/rootfs/deqp/modules/internal
rm -rf /artifacts/rootfs/deqp/executor
rm -rf /artifacts/rootfs/deqp/execserver
rm -rf /artifacts/rootfs/deqp/modules/egl
rm -rf /artifacts/rootfs/deqp/framework
find . -name CMakeFiles | xargs rm -rf
find . -name lib\*.a | xargs rm -rf
du -sh *
rm -rf /VK-GL-CTS-opengl-es-cts-3.2.5.0
############### Cross-build Volt dEQP runner
mkdir -p /battery
cd /battery
wget https://github.com/VoltLang/Battery/releases/download/v0.1.23/battery-0.1.23-x86_64-linux.tar.gz
tar xzvf battery-0.1.23-x86_64-linux.tar.gz
rm battery-0.1.23-x86_64-linux.tar.gz
mv battery /usr/local/bin
rm -rf /battery
mkdir -p /volt
cd /volt
mkdir -p Watt Volta dEQP
wget -qO- https://github.com/VoltLang/Watt/archive/v0.1.3.tar.gz | tar -xz --strip-components=1 -C ./Watt
wget -qO- https://github.com/VoltLang/Volta/archive/v0.1.3.tar.gz | tar -xz --strip-components=1 -C ./Volta
wget -qO- https://github.com/Wallbraker/dEQP/archive/v0.1.4.tar.gz | tar -xz --strip-components=1 -C ./dEQP
battery config --release --lto Volta Watt
battery build
battery config --arch ${VOLT_ARCH} --cmd-volta Volta/volta Volta/rt Watt dEQP
battery build
rm /usr/local/bin/battery
cp dEQP/deqp /artifacts/rootfs/deqp/deqp-volt
rm -rf /volt
############### Remove LLVM now, so the container image is smaller
apt-get -y remove \*llvm\*
############### Cross-build kernel
KERNEL_URL="https://gitlab.freedesktop.org/tomeu/linux/-/archive/panfrost-veyron-fix/linux-panfrost-veyron-fix.tar.gz"
export ARCH=${KERNEL_ARCH}
export CROSS_COMPILE="${GCC_ARCH}-"
mkdir -p /kernel
wget -qO- ${KERNEL_URL} | tar -xz --strip-components=1 -C /kernel
cd /kernel
./scripts/kconfig/merge_config.sh ${DEFCONFIG} /tmp/clone/.gitlab-ci/${KERNEL_ARCH}.config
make -j12 ${KERNEL_IMAGE_NAME} dtbs
cp arch/${KERNEL_ARCH}/boot/${KERNEL_IMAGE_NAME} /artifacts/.
cp ${DEVICE_TREES} /artifacts/.
rm -rf /kernel
############### Create rootfs
cp /tmp/clone/.gitlab-ci/create-rootfs.sh /artifacts/rootfs/.
mkdir -p /artifacts/rootfs/bin
cp /usr/bin/qemu-aarch64-static /artifacts/rootfs/bin
cp /usr/bin/qemu-arm-static /artifacts/rootfs/bin
set +e
debootstrap --variant=minbase --arch=${DEBIAN_ARCH} testing /artifacts/rootfs/ http://deb.debian.org/debian
cat /artifacts/rootfs/debootstrap/debootstrap.log
set -e
chroot /artifacts/rootfs sh /create-rootfs.sh
rm /artifacts/rootfs/bin/qemu-arm-static
rm /artifacts/rootfs/bin/qemu-aarch64-static
rm /artifacts/rootfs/create-rootfs.sh

View File

@@ -1,51 +0,0 @@
#!/bin/sh
GPU_VERSION="$1"
DEQP_OPTIONS="--deqp-surface-width=256 --deqp-surface-height=256"
DEQP_OPTIONS="$DEQP_OPTIONS --deqp-visibility=hidden"
DEQP_OPTIONS="$DEQP_OPTIONS --deqp-log-images=disable"
DEQP_OPTIONS="$DEQP_OPTIONS --deqp-watchdog=enable"
DEQP_OPTIONS="$DEQP_OPTIONS --deqp-crashhandler=enable"
DEQP_OPTIONS="$DEQP_OPTIONS --deqp-surface-type=pbuffer"
export LIBGL_DRIVERS_PATH=/mesa/lib/dri/
export LD_LIBRARY_PATH=/mesa/lib/
export MESA_GLES_VERSION_OVERRIDE=3.0
DEVFREQ_GOVERNOR=`echo /sys/devices/platform/*.gpu/devfreq/devfreq0/governor`
echo performance > $DEVFREQ_GOVERNOR
cd /deqp/modules/gles2
# Generate test case list file
./deqp-gles2 $DEQP_OPTIONS --deqp-runmode=stdout-caselist | grep "TEST: dEQP-GLES2" | cut -d ' ' -f 2 > /tmp/case-list.txt
# Note: not using sorted input and comm, becuase I want to run the tests in
# the same order that dEQP would.
while read -r line; do
if echo "$line" | grep -q '^[^#]'; then
sed -i "/$line/d" /tmp/case-list.txt
fi
done < /deqp/deqp-$GPU_VERSION-skips.txt
/deqp/deqp-volt --cts-build-dir=/deqp \
--threads=8 \
--test-names-file=/tmp/case-list.txt \
--results-file=/tmp/results.txt \
--no-passed-results \
--regression-file=/deqp/deqp-$GPU_VERSION-fails.txt \
--no-rerun-tests \
--print-regression \
--no-print-fail \
--no-print-quality \
--no-colour-term \
$DEQP_OPTIONS
if [ $? -ne 0 ]; then
echo "Regressions detected"
echo "deqp: fail"
else
echo "No regressions detected"
echo "deqp: pass"
fi

View File

@@ -1,61 +0,0 @@
job_name: mesa-deqp-{{ gpu_version }}
device_type: {{ lava_device_type }}
timeouts:
job:
minutes: 40
action:
minutes: 10
actions:
power-off:
seconds: 30
priority: 75
visibility: public
actions:
- deploy:
timeout:
minutes: 10
to: tftp
kernel:
url: {{ base_artifacts_url }}/{{ kernel_image_name }}
{{ kernel_image_type }}
ramdisk:
url: {{ base_artifacts_url }}/lava-rootfs-{{ arch }}.cpio.gz
compression: gz
dtb:
url: {{ base_artifacts_url }}/{{ device_type }}.dtb
os: oe
- boot:
timeout:
minutes: 5
method: {{ boot_method }}
commands: ramdisk
prompts:
- '#'
- test:
timeout:
minutes: 60
definitions:
- repository:
metadata:
format: Lava-Test Test Definition 1.0
name: deqp
description: "Mesa dEQP test plan"
os:
- oe
scope:
- functional
run:
steps:
- mount -t proc none /proc
- mount -t sysfs none /sys
- mount -t devtmpfs none /dev
- mkdir -p /dev/pts
- mount -t devpts devpts /dev/pts
- echo 3 > /proc/sys/kernel/printk
- sh /deqp/lava-deqp-runner.sh {{ gpu_version }}
- cat /proc/loadavg
parse:
pattern: '(?P<test_case_id>\S*):\s+(?P<result>(pass|fail))'
from: inline
name: deqp
path: inline/mesa-deqp.yaml

View File

@@ -1,209 +0,0 @@
variables:
LAVA_DEBIAN_VERSION: testing-slim
LAVA_IMAGE_TAG: "lava-2019-10-23-1"
include:
- project: 'wayland/ci-templates'
ref: 1f7f57c64ff4ebbf7292e3b7a13600518b8cb24c
file: '/templates/debian.yml'
# When to automatically run the CI
.ci-run-policy:
only:
- branches@mesa/mesa
- merge_requests
- /^ci([-/].*)?$/
retry:
max: 2
when:
- runner_system_failure
# Build Docker image with deqp, the rootfs and the build deps for Mesa
.lava-container:
extends:
- .debian@container-ifnot-exists
- .container
variables:
DEBIAN_TAG: '${DEBIAN_ARCH}-${LAVA_IMAGE_TAG}'
DEBIAN_EXEC: 'DEBIAN_ARCH=${DEBIAN_ARCH}
GCC_ARCH=${GCC_ARCH}
KERNEL_ARCH=${KERNEL_ARCH}
VOLT_ARCH=${VOLT_ARCH}
DEFCONFIG=${DEFCONFIG}
DEVICE_TREES="${DEVICE_TREES}"
KERNEL_IMAGE_NAME=${KERNEL_IMAGE_NAME}
bash .gitlab-ci/lava-debian-install.sh'
DEBIAN_VERSION: ${LAVA_DEBIAN_VERSION}
lava-container:armhf:
extends: .lava-container
variables:
DEBIAN_ARCH: "armhf"
GCC_ARCH: "arm-linux-gnueabihf"
KERNEL_ARCH: "arm"
VOLT_ARCH: "armhf"
DEFCONFIG: "arch/arm/configs/multi_v7_defconfig"
DEVICE_TREES: "arch/arm/boot/dts/rk3288-veyron-jaq.dtb arch/arm/boot/dts/sun8i-h3-libretech-all-h3-cc.dtb"
KERNEL_IMAGE_NAME: "zImage"
lava-container:arm64:
extends: .lava-container
variables:
DEBIAN_ARCH: "arm64"
GCC_ARCH: "aarch64-linux-gnu"
KERNEL_ARCH: "arm64"
VOLT_ARCH: "aarch64"
DEFCONFIG: "arch/arm64/configs/defconfig"
DEVICE_TREES: "arch/arm64/boot/dts/rockchip/rk3399-gru-kevin.dtb arch/arm64/boot/dts/amlogic/meson-gxl-s905x-libretech-cc.dtb"
KERNEL_IMAGE_NAME: "Image"
.lava-build:
image: $CI_REGISTRY_IMAGE/debian/$LAVA_DEBIAN_VERSION:$DEBIAN_ARCH-$LAVA_IMAGE_TAG
extends:
- .build-linux
# Use ccache transparently, and print stats before/after
before_script:
- mkdir -p results mesa-build
- mkdir -p ccache
- export PATH="/usr/lib/ccache:$PATH"
- export CCACHE_BASEDIR="$PWD"
- export CCACHE_DIR="$PWD/ccache"
- ccache --max-size=1500M
- ccache --zero-stats || true
- ccache --show-stats || true
script:
# Build Mesa
- /usr/share/meson/debcrossgen --arch ${DEBIAN_ARCH} -o /tmp/cross_file.txt
- meson . mesa-build
--cross-file /tmp/cross_file.txt
--libdir /artifacts/rootfs/mesa/lib/
--buildtype debugoptimized
-D gallium-drivers=kmsro,panfrost,lima
-D dri-drivers=
-D prefix=/artifacts/rootfs/mesa
-D glx=disabled
-D gbm=false
-D egl=true
-D platforms=surfaceless
-D osmesa=none
-D dri3=false
-D gallium-vdpau=false
-D gallium-xvmc=false
-D gallium-omx=disabled
-D gallium-va=false
-D gallium-xa=false
-D gallium-nine=false
-D llvm=false
- ninja -C mesa-build -j4
- ninja -C mesa-build install
- find /artifacts/rootfs/mesa/lib -name \*.so -exec ${GCC_ARCH}-strip {} \;
- du -sh /artifacts/rootfs/mesa/*
- rm -rf /artifacts/rootfs/mesa/include
# Pack rootfs
- cp .gitlab-ci/lava-deqp-runner.sh /artifacts/rootfs/deqp/.
- cp .gitlab-ci/deqp-*-fails.txt /artifacts/rootfs/deqp/.
- cp .gitlab-ci/deqp-*-skips.txt /artifacts/rootfs/deqp/.
- du -sh /artifacts/rootfs/deqp/*
- find /artifacts/rootfs/ -type f -printf "%s\t%p\n" | sort -n
- pushd /artifacts/rootfs/ ; find -H | cpio -H newc -v -o | gzip -c - > $CI_PROJECT_DIR/results/lava-rootfs-${DEBIAN_ARCH}.cpio.gz; popd
# Copy kernel and DT
- cp /artifacts/${KERNEL_IMAGE_NAME} /artifacts/*.dtb $CI_PROJECT_DIR/results/.
# Generate LAVA job
- cd $CI_PROJECT_DIR
- .gitlab-ci/generate_lava.py
--template .gitlab-ci/lava-deqp.yml.jinja2
--arch ${DEBIAN_ARCH}
--base-artifacts-url $CI_PROJECT_URL/-/jobs/$CI_JOB_ID/artifacts/raw/results
--device-types ${DEVICE_TYPES}
--kernel-image-name ${KERNEL_IMAGE_NAME}
after_script:
- export CCACHE_DIR="$PWD/ccache"
- ccache --show-stats
artifacts:
when: always
paths:
- results/
lava-build:armhf:
extends: .lava-build
needs: ["lava-container:armhf"]
variables:
DEBIAN_ARCH: "armhf"
GCC_ARCH: "arm-linux-gnueabihf"
DEVICE_TYPES: "rk3288-veyron-jaq sun8i-h3-libretech-all-h3-cc"
KERNEL_IMAGE_NAME: "zImage"
lava-build:arm64:
extends: .lava-build
needs: ["lava-container:arm64"]
variables:
DEBIAN_ARCH: "arm64"
GCC_ARCH: "aarch64-linux-gnu"
DEVICE_TYPES: "rk3399-gru-kevin meson-gxl-s905x-libretech-cc"
KERNEL_IMAGE_NAME: "Image"
.lava-test:
extends:
- .test
script:
- lava_job_id=`lavacli jobs submit $CI_PROJECT_DIR/results/lava-deqp-$DEVICE_TYPE.yml`
- echo $lava_job_id
- lavacli jobs logs $lava_job_id | grep -a -v "{'case':" | tee results/lava-deqp-$lava_job_id.log
- lavacli jobs show $lava_job_id
- result=`lavacli results $lava_job_id 0_deqp deqp | head -1`
- echo $result
- '[[ "$result" == "pass" ]]'
artifacts:
when: always
paths:
- results/
.lava-test:armhf:
image: $CI_REGISTRY_IMAGE/debian/$LAVA_DEBIAN_VERSION:armhf-$LAVA_IMAGE_TAG
extends: .lava-test
needs:
- lava-container:armhf
- lava-build:armhf
dependencies:
- lava-build:armhf
.lava-test:arm64:
image: $CI_REGISTRY_IMAGE/debian/$LAVA_DEBIAN_VERSION:arm64-$LAVA_IMAGE_TAG
extends: .lava-test
needs:
- lava-container:arm64
- lava-build:arm64
dependencies:
- lava-build:arm64
panfrost-t760-test:armhf:
extends: .lava-test:armhf
variables:
DEVICE_TYPE: rk3288-veyron-jaq
tags:
- lava-rk3288-veyron-jaq
panfrost-t860-test:arm64:
extends: .lava-test:arm64
variables:
DEVICE_TYPE: rk3399-gru-kevin
tags:
- lava-rk3399-gru-kevin
lima-test:armhf:
extends: .lava-test:armhf
variables:
DEVICE_TYPE: sun8i-h3-libretech-all-h3-cc
tags:
- lava-sun8i-h3-libretech-all-h3-cc
lima-test:arm64:
extends: .lava-test:arm64
variables:
DEVICE_TYPE: meson-gxl-s905x-libretech-cc
tags:
- lava-meson-gxl-s905x-libretech-cc

View File

@@ -1,13 +0,0 @@
call "C:\Program Files (x86)\Microsoft Visual Studio\%VERSION%\Common7\Tools\VsDevCmd.bat" -arch=%ARCH%
del /Q /S _build
meson _build ^
-Dbuild-tests=true ^
-Db_vscrt=mtd ^
-Dbuildtype=release ^
-Dllvm=false ^
-Dgallium-drivers=swrast ^
-Dosmesa=gallium
meson configure _build
ninja -C _build
ninja -C _build test

View File

@@ -1,89 +0,0 @@
#!/bin/bash
set -e
set -o xtrace
CROSS_FILE=/cross_file-"$CROSS".txt
# We need to control the version of llvm-config we're using, so we'll
# tweak the cross file or generate a native file to do so.
if test -n "$LLVM_VERSION"; then
LLVM_CONFIG="llvm-config-${LLVM_VERSION}"
echo -e "[binaries]\nllvm-config = '`which $LLVM_CONFIG`'" > native.file
if [ -n "$CROSS" ]; then
sed -i -e '/\[binaries\]/a\' -e "llvm-config = '`which $LLVM_CONFIG`'" $CROSS_FILE
fi
$LLVM_CONFIG --version
else
rm -f native.file
touch native.file
fi
# cross-xfail-$CROSS, if it exists, contains a list of tests that are expected
# to fail for the $CROSS configuration, one per line. you can then mark those
# tests in their meson.build with:
#
# test(...,
# should_fail: meson.get_cross_property('xfail', '').contains(t),
# )
#
# where t is the name of the test, and the '' is the string to search when
# not cross-compiling (which is empty, because for amd64 everything is
# expected to pass).
if [ -n "$CROSS" ]; then
CROSS_XFAIL=.gitlab-ci/cross-xfail-"$CROSS"
if [ -s "$CROSS_XFAIL" ]; then
sed -i \
-e '/\[properties\]/a\' \
-e "xfail = '$(tr '\n' , < $CROSS_XFAIL)'" \
"$CROSS_FILE"
fi
fi
rm -rf _build
meson _build --native-file=native.file \
--wrap-mode=nofallback \
${CROSS+--cross "$CROSS_FILE"} \
-D prefix=`pwd`/install \
-D libdir=lib \
-D buildtype=${BUILDTYPE:-debug} \
-D build-tests=true \
-D libunwind=${UNWIND} \
${DRI_LOADERS} \
-D dri-drivers=${DRI_DRIVERS:-[]} \
${GALLIUM_ST} \
-D gallium-drivers=${GALLIUM_DRIVERS:-[]} \
-D vulkan-drivers=${VULKAN_DRIVERS:-[]} \
-D I-love-half-baked-turnips=true \
${EXTRA_OPTION}
cd _build
meson configure
ninja -j4
LC_ALL=C.UTF-8 ninja test
ninja install
cd ..
if test -n "$MESON_SHADERDB"; then
./.gitlab-ci/run-shader-db.sh;
fi
# Delete 2MB of includes from artifacts.
rm -rf install/include
# Strip the drivers in the artifacts to cut 80% of the artifacts size.
if [ -n "$CROSS" ]; then
STRIP=`sed -n -E "s/strip\s*=\s*'(.*)'/\1/p" "$CROSS_FILE"`
if [ -z "$STRIP" ]; then
echo "Failed to find strip command in cross file"
exit 1
fi
else
STRIP="strip"
fi
find install -name \*.so -exec $STRIP {} \;
# Test runs don't pull down the git tree, so put the dEQP helper
# script and associated bits there.
mkdir -p artifacts/
cp -Rp .gitlab-ci/deqp* artifacts/
# cp -Rp src/freedreno/ci/expected* artifacts/

View File

@@ -1,17 +0,0 @@
set -e
set -v
ARTIFACTSDIR=`pwd`/shader-db
mkdir -p $ARTIFACTSDIR
export DRM_SHIM_DEBUG=true
LIBDIR=`pwd`/install/lib
export LD_LIBRARY_PATH=$LIBDIR
cd /usr/local/shader-db
for driver in freedreno v3d; do
env LD_PRELOAD=$LIBDIR/lib${driver}_noop_drm_shim.so \
./run -j 4 ./shaders \
> $ARTIFACTSDIR/${driver}-shader-db.txt
done

View File

@@ -1,12 +0,0 @@
#!/bin/bash
set -e
set -o xtrace
if test -n "$LLVM_VERSION"; then
export LLVM_CONFIG="llvm-config-${LLVM_VERSION}"
fi
rm -rf build
scons $SCONS_TARGET force_scons=on
eval $SCONS_CHECK_COMMAND

View File

@@ -1,20 +0,0 @@
[binaries]
c = ['ccache', 'x86_64-w64-mingw32-gcc']
cpp = ['ccache', 'x86_64-w64-mingw32-g++']
ar = 'x86_64-w64-mingw32-ar'
strip = 'x86_64-w64-mingw32-strip'
pkgconfig = '/usr/local/bin/x86_64-w64-mingw32-pkg-config'
windres = 'x86_64-w64-mingw32-windres'
exe_wrapper = ['wine64']
[properties]
needs_exe_wrapper = True
sys_root = '/usr/x86_64-w64-mingw32/'
[host_machine]
system = 'windows'
cpu_family = 'x86_64'
cpu = 'x86_64'
endian = 'little'
; vim: ft=dosini

490
.mailmap
View File

@@ -1,490 +0,0 @@
Aapo Tahkola <aet@rasterburn.org> <aapo@aapo-desktop.(none)>
Adam Jackson <ajax@redhat.com> <ajax@benzedrine.nwnk.net>
Adam Jackson <ajax@redhat.com> <ajax@freedesktop.org>
Adrian Marius Negreanu <adrian.m.negreanu@intel.com> Adrian Negreanu <adrian.m.negreanu@intel.com>
Adrian Marius Negreanu <adrian.m.negreanu@intel.com> Negreanu Marius Adrian <adrian.m.negreanu@intel.com>
Dave Airlie <airlied@redhat.com> <airliedfreedesktop.org>
Dave Airlie <airlied@redhat.com> airlied <airlied@unused-12-215.bne.redhat.com>
Dave Airlie <airlied@redhat.com> <airlied@dhcp-1-203.bne.redhat.com>
Dave Airlie <airlied@redhat.com> <airlied@gmail.com>
Dave Airlie <airlied@redhat.com> <airlied@itt42.(none)>
Dave Airlie <airlied@redhat.com> <airlied@linux.ie>
Dave Airlie <airlied@redhat.com> <airlied@nx6125b.(none)>
Dave Airlie <airlied@redhat.com> <airlied@panoply-rh.(none)>
Dave Airlie <airlied@redhat.com> <airlied@ppcg5.localdomain>
Alan Coopersmith <alan.coopersmith@oracle.com> <alan.coopersmith@sun.com>
Alan Hourihane <alanh@vmware.com> <alanh@tungstengraphics.com>
Alan Hourihane <alanh@vmware.com> <alanh@fairlite.demon.co.uk>
Alan Hourihane <alanh@vmware.com> <alanh@jetpack.(none)>
Alexander Monakov <amonakov@gmail.com> <amonakov@ispras.ru>
Alexander von Gluck IV <kallisti5@unixzen.com> Alexander von Gluck <kallisti5@unixzen.com>
Alexandros Frantzis <alexandros.frantzis@collabora.com> <Alexandros.Frantzis@canonical.com>
Alex Corscadden <alexc@vmware.com> <alexc@alexc-dev1.prom.eng.vmware.com>
Alex Corscadden <alexc@vmware.com> <alexc@alexc-dev1.vmware.com>
Alex Deucher <alexdeucher@gmail.com> <alexander.deucher@amd.com>
Alex Deucher <alexdeucher@gmail.com> <agd5f@yahoo.com>
Alex Deucher <alexdeucher@gmail.com> <alex@botch2.com>
Alex Deucher <alexdeucher@gmail.com> <alex@botch2.(none)>
Alex Deucher <alexdeucher@gmail.com> <alex@cube.(none)>
Alex Deucher <alexdeucher@gmail.com> <alex@samba.(none)>
Andreas Fänger <a.faenger@e-sign.com> <a.faenger@e-sign.com>
Andreas Hartmetz <ahartmetz@gmail.com> <andreas.hartmetz@kdab.com>
Andre Heider <a.heider@gmail.com>
Andreas Heider <andreas@heider.io>
Andreas Pokorny <andreas.pokorny@canonical.com> <andreas.pokorny@elektrobit.com>
Andrew Randrianasulu <randrianasulu@gmail.com> <randrik_a@yahoo.com>
Andrew Randrianasulu <randrianasulu@gmail.com> <randrik@mail.ru>
Arthur Huillet <arthur.huillet@free.fr> Arthur HUILLET <arthur.huillet@free.fr>
Bas Nieuwenhuizen <bas@basnieuwenhuizen.nl> <basni@chromium.org>
Benjamin Franzke <benjaminfranzke@googlemail.com> ben <benjaminfranzke@googlemail.com>
Ben Skeggs <bskeggs@redhat.com> <darktama@beleth.(none)>
Ben Skeggs <bskeggs@redhat.com> <darktama@iinet.net.au>
Ben Skeggs <bskeggs@redhat.com> <darktama@nisroch.keine.ath.cx>
Ben Skeggs <bskeggs@redhat.com> <skeggsb-at-gmail.com>
Ben Skeggs <bskeggs@redhat.com> <skeggsb@gmail.com>
Ben Skeggs <bskeggs@redhat.com> <skeggsb@localhost.localdomain>
Ben Skeggs <bskeggs@redhat.com> <skeggsb@nisroch.keine.ath.cx>
Ben Widawsky <benjamin.widawsky@intel.com> Ben Widawsky <ben@bwidawsk.net>
Blair Sadewitz <blair.sadewitz@gmail.com> Blair Sadewitz <blair.sadewitz.gmail.com>
Boris Peterbarg <reist@users.sourceforge.net> reist <reist>
Brian Paul <brianp@vmware.com> Brian <brian.paul@tungstengraphics.com>
Brian Paul <brianp@vmware.com> <brian.paul@tungstengraphics.com>
Brian Paul <brianp@vmware.com> <brian.e.paul@gmail.com>
Brian Paul <brianp@vmware.com> <brianp@kemper.freedesktop.org>
Brian Paul <brianp@vmware.com> brian <brian@cvp965.(none)>
Brian Paul <brianp@vmware.com> Brian <brian@i915.localnet.net>
Brian Paul <brianp@vmware.com> Brian <brian@nostromo.localnet.net>
Brian Paul <brianp@vmware.com> Brian <brian@poulsbo.localnet.net>
Brian Paul <brianp@vmware.com> Brian <brian@ps3.localnet.net>
Brian Paul <brianp@vmware.com> Brian <brianp@vmware.com>
Brian Paul <brianp@vmware.com> Brian <brian@yutani.localnet.net>
Brian Paul <brianp@vmware.com> root <brian.paul@tungstengraphics.com>
Brian Paul <brianp@vmware.com> root <root@i915.localnet.net>
Brian Paul <brianp@vmware.com> root <root@nostromo.localnet.net>
Brian Paul <brianp@vmware.com> root <root@i965.localnet.net>
Bruce Merry <bmerry@users.sourceforge.net> <bmerry@gmail.com>
Carl-Philip Hänsch <cphaensch@googlemail.com> Carl-Philip Haensch <s3734770@mail.zih.tu-dresden.de>
Carl-Philip Hänsch <cphaensch@googlemail.com> Carl-Philip Haensch <carli@carli-laptop.(none)>
Carl-Philip Hänsch <cphaensch@googlemail.com> Carl-Philip Haensch <Carl-Philip.Haensch@mailbox.tu-dresden.de>
Chad Versace <chadversary@chromium.org> <chad@kiwitree.net>
Chad Versace <chadversary@chromium.org> <chad@chad-versace.us>
Chad Versace <chadversary@chromium.org> <Chad Versace chad@chad-versace.us>
Chad Versace <chadversary@chromium.org> <chad.versace@intel.com>
Chad Versace <chadversary@chromium.org> <chad.versace@linux.intel.com>
Chia-I Wu <olvaffe@gmail.com> <olv@lunarg.com>
Chia-I Wu <olvaffe@gmail.com> Chia-Wu <olvaffe@gmail.com>
Chih-Wei Huang <cwhuang@linux.org.tw> Chih-Wei Huang <cwhuang@android-x86.org>
Christian König <christian.koenig@amd.com> Christian Koenig <christian.koenig@amd.com>
Christian König <christian.koenig@amd.com> Christian König <christian.koenig at amd.com>
Christian König <christian.koenig@amd.com> Christian König <deathsimple@vodafone.de>
Christoph Brill <egore911@egore911.de> Christoph Bill <egore@gmx.de>
Christoph Brill <egore911@egore911.de> <egore@gmx.de>
Christoph Bumiller <christoph.bumiller@speed.at> <e0425955@student.tuwien.ac.at>
Christopher James Halse Rogers <christopher.halse.rogers@canonical.com> Christopher James Halse Rogers <raof@ubuntu.com>
Claudio Ciccani <klan@directfb.org> <klan@users.sf.net>
Claudio Ciccani <klan@directfb.org> <klan@users.sourceforge.net>
Connor Abbott <cwabbott0@gmail.com> <connor.w.abbott@intel.com>
Connor Abbott <cwabbott0@gmail.com> <connor.abbott@intel.com>
Corbin Simpson <MostAwesomeDude@gmail.com> <mostawesomed...@gmail.com>
Corbin Simpson <MostAwesomeDude@gmail.com> <mostawesomedude@gmail.com>
Courtney Goeltzenleuchter <courtney@lunarg.com> <courtney@LunarG.com>
Daniel Skinner <sio@users.sourceforge.net> sio <sio>
Daniel Stone <daniels@collabora.com> <daniel@fooishbar.org>
David Miller <davem@davemloft.net> David S. Miller <davem@davemloft.net>
David Miller <davem@davemloft.net> Dave Miller <davem@davemloft.net>
David Miller <davem@davemloft.net> davem69 <davem69>
David Heidelberger <david.heidelberger@ixit.cz> David Heidelberg <david@ixit.cz>
David Heidelberger <david.heidelberger@ixit.cz> <d.okias@gmail.com>
David Reveman <reveman@chromium.org> <c99drn@cs.umu.se>
Dieter Nützel <Dieter@nuetzel-hh.de> Dieter Nützel <dieter@nuetzel-hh.de>
Dmitry Cherkassov <dcherkassov@gmail.com> Dmitry Cherkasov <dcherkassov@gmail.com>
Dylan Baker <dylanx.c.baker@intel.com> <baker.dylan.c@gmail.com>
Edward O'Callaghan <funfunctor@folklore1984.net> <eocallaghan@alterapraxis.com>
Elie Tournier <tournier.elie@gmail.com>
Emeric Grange <emeric.grange@gmail.com> Emeric <emeric.grange@gmail.com>
Emil Velikov <emil.l.velikov@gmail.com> <emil.velikov@collabora.com>
Emil Velikov <emil.l.velikov@gmail.com> <emil.veliko@collabora.com>
Emil Velikov <emil.l.velikov@gmail.com> <emil.velikov@collabora.co.uk>
Emil Velikov <emil.l.velikov@gmail.com> <emil.veliikov@collabora.com>
Emil Velikov <emil.l.velikov@gmail.com> <emil.velikov@gmail.com>
Emil Velikov <emil.l.velikov@gmail.com> <emmil.velikov@collabora.com>
Eric Anholt <eric@anholt.net> Eric Anholt <anholt@FreeBSD.org>
Eric Engestrom <eric@engestrom.ch> <eric.engestrom@imgtec.com>
Eric Engestrom <eric@engestrom.ch> <eric.engestrom@intel.com>
Eugeni Dodonov <eugeni.dodonov@intel.com> <eugeni@mandriva.com>
Fabian Bieler <der.fabe@gmx.net> <fabianbieler@fastmail.fm>
Fabian Bieler <der.fabe@gmx.net> <&lt;der.fabe@gmx.net&gt>
Feng, Haitao <haitao.feng@intel.com> Haitao Feng <haitao.feng@intel.com>
Frank Binns <frank.binns@imgtec.com> <francisbinns@gmail.com>
Frank Henigman <fjhenigman@google.com> <fjhenigman@chromium.org>
George Sapountzis <gsapountzis@gmail.com> George Sapountzis <gsap7@yahoo.gr>
Gert Wollny <gert.wollny@collabora.com> <gw.fossdev@gmail.com>
Gwenole Beauchesne <gwenole.beauchesne@intel.com> <gb.devel@gmail.com>
Hamish Marson <hmarson@users.sourceforge.net> hmarson <hmarson>
Hans de Goede <hdegoede@redhat.com> Hans de Goede <j.w..r..degoede@hhs.nl>
Homer Hsing <dongsheng.xing@intel.com> <homer.hsing@gmail.com>
Hui Qi Tay <hqtay@vmware.com> <tayhuiqithq@gmail.com>
Ian Romanick <ian.d.romanick@intel.com> <idr@freedesktop.org>
Ian Romanick <ian.d.romanick@intel.com> <idr@us.ibm.com>
Jakob Bornecrantz <wallbraker@gmail.com> <jakob@vmware.com>
Jakob Bornecrantz <wallbraker@gmail.com> <jakob@aurora.(none)>
Jakob Bornecrantz <wallbraker@gmail.com> <jakob@aurora.walkyrie.se>
Jakob Bornecrantz <wallbraker@gmail.com> <jakob@tungstengraphics.com>
Jakob Bornecrantz <wallbraker@gmail.com> <wallbraker 'at' gmail 'dot' com>
Jakob Bornecrantz <wallbraker@gmail.com> <jakob.bornecrantz@collabora.com>
Jakob Bornecrantz <wallbraker@gmail.com> <jakob@collabora.com>
Jakub Bogusz <qboosh@pld-linux.org> <gboosh@pld-linux.org>
James Legg <jlegg@feralinteractive.com> <lankyleggy@gmail.com>
Jan Vesely <jano.vesely@gmail.com> Jan Vesely <jan.vesely@rutgers.edu>
Jason Ekstrand <jason@jlekstrand.net> <jason.ekstrand@intel.com>
Jeremy Huddleston <jeremyhu@apple.com> <jeremyhu@freedesktop.org>
Jeremy Huddleston <jeremyhu@apple.com> <jeremy@tifa.local>
Jeremy Huddleston <jeremyhu@apple.com> <jeremy@vincent.local>
Jeremy Huddleston <jeremyhu@apple.com> <jeremy@yuffie.local>
Jeremy Huddleston <jeremyhu@apple.com> Jeremy Huddleston Sequoia <jeremyhu@apple.com>
Jeremy Kolb <jkolb@freedesktop.org> <jkolb@brandeis.edu>
Jerome Glisse <jglisse@redhat.com> <glisse@freedesktop.org>
Jerome Glisse <jglisse@redhat.com> <glisse@kemper.freedesktop.org>
Jerome Glisse <jglisse@redhat.com> John Doe <glisse@barney.(none)>
Jerome Glisse <jglisse@redhat.com> John Doe <glisse@localhost.localdomain>
Jesse Barnes <jesse.barnes@intel.com> <jbarnes@hobbes.lan>
Jesse Barnes <jesse.barnes@intel.com> <jbarnes@hobbes.(none)>
Jesse Barnes <jesse.barnes@intel.com> <jbarnes@jbarnes-desktop.localdomain>
Jesse Barnes <jesse.barnes@intel.com> <jbarnes@jbarnes-t61.(none)>
Jesse Barnes <jesse.barnes@intel.com> <jbarnes@virtuousgeek.org>
Joakim Sindholt <bacn@zhasha.com> <opensource@zhasha.com>
Joakim Sindholt <bacn@zhasha.com> <zhasha@gallium-dev.(none)>
Jochen Gerlach <jtg@users.sourceforge.net> jtg <jtg>
Joel Bosveld <joel.bosveld@gmail.com> <Joel.Bosveld@gmail.com>
Jonathan Adamczewski <jadamcze@utas.edu.au> <jadamcze@utas.edu.a>
Jon Turney <jon.turney@dronecode.org.uk> Jon TURNEY <jon.turney@dronecode.org.uk>
José Fonseca <jfonseca@vmware.com> Jose Fonseca <jfonseca@vmware.com>
José Fonseca <jfonseca@vmware.com> Jose Fonseca <jrfonseca@tungstengraphics.com>
José Fonseca <jfonseca@vmware.com> <jfonseca@pegasus.(none)>
José Fonseca <jfonseca@vmware.com> <jfonseca@titan.(none)>
José Fonseca <jfonseca@vmware.com> <jose.r.fonseca@gmail.com>
José Fonseca <jfonseca@vmware.com> <jrfonseca@tungstengraphics.com>
José Fonseca <jfonseca@vmware.com> <j_r_fonseca@yahoo.co.uk>
Jouk Jansen <joukj@hrem.nano.tudelft.nl> Jouk Jansen <jouk@hrem.nano.tudelft.nl>
Jouk Jansen <joukj@hrem.nano.tudelft.nl> Jouk Jansen <joukj@hrem.stm.tudelft.nl>
Jouk Jansen <joukj@hrem.nano.tudelft.nl> joukj <joukj@tarantella.(none)>
Jouk Jansen <joukj@hrem.nano.tudelft.nl> Jouk <joukj@tarantella.nano.tudelft.nl>
Jouk Jansen <joukj@hrem.nano.tudelft.nl> Jouk <joukj@tarantella.(none)>
Jouk Jansen <joukj@hrem.nano.tudelft.nl> J.Jansen <joukj@tarantella.nano.tudelft.nl>
Juan Zhao <juan.j.zhao@intel.com> <juan.j.zhao@linux.intel.com>
Julien Cristau <jcristau@debian.org> <julien.cristau@logilab.fr>
Julien Isorce <j.isorce@samsung.com> <julien.isorce@gmail.com>
Kalyan Kondapally <kalyan.kondapally@intel.com> <kondapallykalyancontribute@gmail.com>
Karl Schultz <karl.w.schultz@gmail.com> Karl Schultze <k.w.schultz@comcast.net>
Karl Schultz <karl.w.schultz@gmail.com> unknown <kwschult@.na.qualcomm.com>
Karl Schultz <karl.w.schultz@gmail.com> <k.w.schultz@comcast.net>
Karl Schultz <karl.w.schultz@gmail.com> <Karl.W.Schultz@gmail.com>
Karl Schultz <karl.w.schultz@gmail.com> <kschultz@freedesktop.org>
Keith Harrison <sio2@users.sourceforge.net> sio2 <sio2>
Keith Packard <keithp@keithp.com> <keithp@koto.keithp.com>
Keith Packard <keithp@keithp.com> <keithp@neko.keithp.com>
Keith Whitwell <keithw@vmware.com> <keith@tungstengraphics.com>
Keith Whitwell <keithw@vmware.com> keithw <keithw@keithw-laptop.(none)>
Kristian Høgsberg <krh@bitplanet.net> <krh@redhat.com>
Kristian Høgsberg <krh@bitplanet.net> <krh@hinata.boston.redhat.com>
Kristian Høgsberg <krh@bitplanet.net> <krh@sasori.boston.redhat.com>
Kristian Høgsberg <krh@bitplanet.net> <krh@temari.boston.redhat.com>
Kristian Høgsberg <krh@bitplanet.net> <kristian.h.kristensen@intel.com>
Kristian Høgsberg <krh@bitplanet.net> <hoegsberg@chromium.org>
Kristian Høgsberg <krh@bitplanet.net> <hoegsberg@google.com>
Kristian Høgsberg <krh@bitplanet.net> <hoegsberg@gmail.com>
Krzesimir Nowak <qdlacz@gmail.com> <krzesimir@kinvolk.io>
Li Peng <peng.li@intel.com> <peng.li@linux.intel.com>
Lucas Stach <dev@lynxeye.de> <l.stach@pengutronix.de>
Maarten Lankhorst <maarten.lankhorst@ubuntu.com> <dev@mblankhorst.nl>
Maarten Lankhorst <maarten.lankhorst@ubuntu.com> <m.b.lankhorst@gmail.com>
Maarten Lankhorst <maarten.lankhorst@ubuntu.com> <maarten.lankhorst@canonical.com>
Maciej Cencora <m.cencora@gmail.com> <maciej@osiris.(none)>
Marc-André Lureau <marcandre.lureau@gmail.com> Marc-Andre Lureau <marcandre.lureau@gmail.com>
Marc Dietrich <marvin24@gmx.de> Marc <marvin24@gmx.de>
Marc Dietrich <marvin24@gmx.de> marvin24 <marvin24@gmx.de>
Marcin Ślusarz <marcin.slusarz@gmail.com> Marcin Slusarz <marcin.slusarz@gmail.com>
Marek Olšák <maraeo@gmail.com> <marek.olsak@amd.com>
Mario Kleiner <mario.kleiner.de@gmail.com> kleinerm <mario.kleiner@tuebingen.mpg.de>
Mario Kleiner <mario.kleiner.de@gmail.com> <mario.kleiner@tuebingen.mpg.de>
Mark Mueller <markkmueller@gmail.com> <MarkKMueller@gmail.com>
Marta Lofstedt <marta.lofstedt@intel.com> <marta.lofstedt@linux.intel.com>
Martin Peres <martin.peres@linux.intel.com> <martin.peres@labri.fr>
Mathias Fröhlich <mathias.froehlich@gmx.net> Mathias Froehlich <Mathias.Froehlich@gmx.net>
Mathias Fröhlich <mathias.froehlich@gmx.net> Mathias Froehlich <Mathias.Froehlich@web.de>
Mathias Fröhlich <mathias.froehlich@gmx.net> Mathias Frohlich <M.Froehlich@science-computing.de>
Mathias Fröhlich <mathias.froehlich@gmx.net> <frohlich8@users.sourceforge.net>
Mathias Fröhlich <mathias.froehlich@gmx.net> <Mathias.Froehlich@gmx.net>
Mathias Fröhlich <mathias.froehlich@gmx.net> <Mathias.Froehlich@web.de>
Mathias Fröhlich <mathias.froehlich@gmx.net> M.Froehlich@science-computing.de <M.Froehlich@science-computing.de>
Matthew W. S. Bell <matthew@bells23.org.uk> Matthew Bell <matthew@bells23.org.uk>
Maxence Le Doré <maxence.ledore@gmail.com> Maxence Le Dore <maxence.ledore@gmail.com>
Micah Fedke <micah.fedke@collabora.co.uk> <M.Fedke@Astronautics.com>
Michal Krol <michal@vmware.com> <michal@tungstengraphics.com>
Michal Krol <michal@vmware.com> Michal Krol <michal@ubuntu-vbox.(none)>
Michal Krol <michal@vmware.com> Michal Krol <mjkrol@gmail.org>
Michal Krol <michal@vmware.com> michal <michal@capacitor.(none)>
Michal Krol <michal@vmware.com> michal <michal@michal-laptop.(none)>
Michal Krol <michal@vmware.com> michal <michal@quad.(none)>
Michal Krol <michal@vmware.com> michal <michal@transistor.(none)>
Michal Krol <michal@vmware.com> Michal <michal@tungstengraphics.com>
Michal Krol <michal@vmware.com> michal <michal@wmvare.com>
Michel Dänzer <michel@daenzer.net> <michel.daenzer@amd.com>
Michel Dänzer <michel@daenzer.net> <daenzer@vmware.com>
Michel Dänzer <michel@daenzer.net> <michel@tungstengraphics.com>
Michel Dänzer <michel@daenzer.net> Michel Daenzer <michel.daenzer@amd.com>
Michel Dänzer <michel@daenzer.net> Michel Daenzer <daenzer@localhost.(none)>
Michel Dänzer <michel@daenzer.net> <mdaenzer@redhat.com>
Mike Kaplinskiy <mike.kaplinskiy@gmail.com> Mike Kaplinksiy <mike.kaplinskiy@gmail.com>
Mike Kaplinskiy <mike.kaplinskiy@gmail.com> <mike.kaplinskiy@gmai.com>
Mike Stroyan <mike@lunarg.com> <mike@LunarG.com>
Nian Wu <nian.wu@intel.com> <nian@graphics.(none)>
Nian Wu <nian.wu@intel.com> <nian@tinderbox.sh.intel.com>
Nick Bowler <nbowler@draconx.ca>
Nick Sarnie <commendsarnex@gmail.com>
Nicolai Hähnle <nicolai.haehnle@amd.com> <nhaehnle@gmail.com>
Nicolai Hähnle <nicolai.haehnle@amd.com> Nicolai Haehnle <nhaehnle@gmail.com>
Nicolai Hähnle <nicolai.haehnle@amd.com> Nicolai Haehnle <prefect_@gmx.net>
Nicolai Hähnle <nicolai.haehnle@amd.com> Nicolai Haehnle <prefect@upb.de>
Nigel Stewart <nigels@users.sourceforge.net> <nigels@sourceforge.net>
Nigel Stewart <nigels@users.sourceforge.net> <nstewart@nvidia.com>
nobled <nobled@dreamwidth.org> <nobled2@nobled2-karmic.(none)>
Oliver McFadden <oliver.mcfadden@linux.intel.com> <z3ro.geek@gmail.com>
Owain Ainsworth <zerooa@googlemail.com> Owain G. Ainsworth <oga@openbsd.org>
Owen W. Taylor <otaylor@fishsoup.net> Owen Taylor <otaylor@snell.localdomain>
Patrice Mandin <patmandin@gmail.com> <patrice@manoir.racoon.city>
Patrice Mandin <patmandin@gmail.com> <pmandin@caramail.com>
Patrice Mandin <patmandin@gmail.com> <pmandin@freedesktop.org>
Pauli Nieminen <pauli.nieminen@linux.intel.com> <suokkos@gmail.com>
Paulo Zanoni <paulo.r.zanoni@intel.com> Paulo Zanoni <pzanoni@mandriva.com>
Paul Seidler <sepek@exherbo.org> Paul Seidler <pl.seidler@googlemail.com>
Pekka Paalanen <pekka.paalanen@collabora.co.uk> <ppaalanen@gmail.com>
Pekka Paalanen <pekka.paalanen@collabora.co.uk> <pq@iki.fi>
Peter Hutterer <peter.hutterer@who-t.net> <peter@cs.unisa.edu.au>
Pierre-Eric Pelloux-Prayer <pelloux@gmail.com> pepp <pelloux@gmail.com>
Pierre Willenbrock <pierre@pirsoft.de> Pierre Willenbrok <pierre@pirsoft.de>
Quentin Glidic <sardemff7+git@sardemff7.net> <sardemff7@sardemff7.net>
RALOVICH, Kristóf <tade60@freemail.hu> <kristof.ralovich@gmail.com>
Richard Li <richardradeon@gmail.com> <RichardZ.Li@amd.com>
# The next ones are not 100% sure
Richard Li <richardradeon@gmail.com> richard <richard@richard-desktop3.(none)>
Richard Li <richardradeon@gmail.com> richard <richard@richard-desktop.(none)>
Richard Li <richardradeon@gmail.com> root <root@richard-desktop.(none)>
Richard Sandiford <rsandifo@linux.vnet.ibm.com> <r.sandiford@uk.ibm.com>
Rob Clark <robclark@freedesktop.org> <Rob Clark robdclark@freedesktop.org>
Rob Clark <robclark@freedesktop.org> <robdclark@gmail.com>
Robert Bragg <robert@sixbynine.org> <robert@linux.intel.com>
Robert Ellison <papillo@vmware.com> <papillo@i965-laptop.(none)>
Robert Ellison <papillo@vmware.com> <papillo@tungstengraphics.com>
Robert Hooker <sarvatt@ubuntu.com> <robert.hooker@canonical.com>
Roland Scheidegger <sroland@vmware.com> <rscheidegger@gmx.ch>
Roland Scheidegger <sroland@vmware.com> <sroland@tungstengraphics.com>
Roy Spliet <rspliet@eclipso.eu> <r.spliet@student.tudelft.nl>
Rune Petersen <rune@megahurts.dk> Rune Peterson <rune@megahurts.dk>
Ryan Houdek <sonicadvance1@gmail.com> <Sonicadvance1@gmail.com>
Sam Hocevar <sam@hocevar.net> Sam Hocevar <sam@zoy.org>
Samuel Iglesias Gonsálvez <siglesias@igalia.com> Samuel Iglesias Gonsalvez <siglesias@igalia.com>
Sean D'Epagnier <sean@depagnier.com> <geckosenator@freedesktop.org>
Serge Martin <edb+mesa@sigluy.net> Serge Martin (EdB) <edb+mesa@sigluy.net>
Serge Martin <edb+mesa@sigluy.net> EdB <edb+mesa@sigluy.net>
Sinclair Yeh <syeh@vmware.com> <sinclair.yeh@intel.com>
Stefan Brüns <stefan.bruens@rwth-aachen.de> <Stefan.Bruens@rwth-aachen.de>
Stéphane Marchesin <marcheu@chromium.org> Stephane Marchesin <marchesin@icps.u-strasbg.fr>
Stéphane Marchesin <marcheu@chromium.org> Stephane Marchesin <stephane.marchesin@gmail.com>
Sven M. Hallberg <pesco@users.sourceforge.net> pesco <pesco>
Tapani Pälli <tapani.palli@intel.com> <tapani.palli@gmail.com>
Tapani Pälli <tapani.palli@intel.com> Tapani <tapani.palli@intel.com>
Thierry Reding <treding@nvidia.com> <thierry@gilfi.de>
Thierry Reding <treding@nvidia.com> <thierry.reding@avionic-design.de>
Thierry Vignaud <thierry.vignaud@gmail.com> <tvignaud@mandriva.com>
Thomas Balling Sørensen <tball@io.dk> <tball@tball-laptop.(none)>
Thomas Hellstrom <thellstrom@vmware.com> Thomas <thellstrom@vmware.com>
Thomas Hellstrom <thellstrom@vmware.com> Thomas Hellstrom <thellstrom-at-vmware-dot-com>
Thomas Hellstrom <thellstrom@vmware.com> Thomas Hellstrom <thomas-at-tungstengraphics-dot-com>
Thomas Hellstrom <thellstrom@vmware.com> Thomas Hellstrom <thomas@tungstengraphics.com>
Thomas Hellstrom <thellstrom@vmware.com> Thomas Hellström <thomas@tungstengraphics.com>
Thomas Tanner <tanner@gmx.net> tanner <tanner>
Tilman Sauerbeck <tilman@code-monkey.de> <tilman@freedesktop.org>
Timothy Arceri <timothy.arceri@collabora.com> <t_arceri@yahoo.com.au>
Timothy Arceri <timothy.arceri@collabora.com> Timothy <t_arceri@yahoo.com.au>
Tom Fogal <tfogal@alumni.unh.edu> <tfogal@sci.utah.edu>
Tom Stellard <thomas.stellard@amd.com> <tstellar@gmail.com>
Tom Stellard <thomas.stellard@amd.com> Thomas Stellard <tom.stellard@amd.com>
Tomeu Vizoso <tomeu.vizoso@collabora.com> <tomeu@tomeuvizoso.net>
Tormod Volden <debian.tormod@gmail.com> <lists.tormod@gmail.com>
Török Edwin <edwin+mesa@etorok.net> Török Edvin <edwintorok@gmail.com>
Török Edwin <edwin+mesa@etorok.net> <edwintorok@gmail.com>
Ville Syrjälä <ville.syrjala@linux.intel.com> Ville Syrjala <syrjala@freedesktop.org>
Ville Syrjälä <ville.syrjala@linux.intel.com> Ville Syrjala <syrjala@sci.fi>
Vincent Lejeune <vljn@ovi.com> <peluche.canard@gmail.com>
Vinson Lee <vlee@freedesktop.org> <vlee@vmware.com>
Zhenyu Wang <zhenyuw@linux.intel.com> Wang Zhenyu <zhenyu.z.wang@intel.com>
Zack Rusin <zackr@vmware.com> <zack@kde.org>
Zack Rusin <zackr@vmware.com> <zack@pixel.(none)>
Zack Rusin <zackr@vmware.com> <zack@tungstengraphics.com>
Zhang <zxpmyth@yahoo.com.cn> zhang <zxpmyth@yahoo.com.cn>

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@@ -1,63 +0,0 @@
language: c
os: osx
cache:
ccache: true
env:
global:
- PKG_CONFIG_PATH=""
matrix:
include:
- env:
- BUILD=meson
- env:
- BUILD=scons
before_install:
- HOMEBREW_NO_AUTO_UPDATE=1 brew install expat gettext
- if test "x$BUILD" = xmeson; then
HOMEBREW_NO_AUTO_UPDATE=1 brew install ninja;
fi
- if test "x$BUILD" = xscons; then
HOMEBREW_NO_AUTO_UPDATE=1 brew install scons;
fi
# Set PATH for homebrew pip3 installs
- PATH="$HOME/Library/Python/3.6/bin:${PATH}"
# Set PKG_CONFIG_PATH for keg-only expat
- PKG_CONFIG_PATH="/usr/local/opt/expat/lib/pkgconfig:${PKG_CONFIG_PATH}"
# Set PATH for keg-only gettext
- PATH="/usr/local/opt/gettext/bin:${PATH}"
# Install xquartz for prereqs ...
- XQUARTZ_VERSION="2.7.11"
- wget -nv https://dl.bintray.com/xquartz/downloads/XQuartz-${XQUARTZ_VERSION}.dmg
- hdiutil attach XQuartz-${XQUARTZ_VERSION}.dmg
- sudo installer -pkg /Volumes/XQuartz-${XQUARTZ_VERSION}/XQuartz.pkg -target /
- hdiutil detach /Volumes/XQuartz-${XQUARTZ_VERSION}
# ... and set paths
- PKG_CONFIG_PATH="/opt/X11/share/pkgconfig:/opt/X11/lib/pkgconfig:${PKG_CONFIG_PATH}"
install:
- if test "x$BUILD" = xmeson; then
pip3 install --user meson;
pip3 install --user mako;
fi
- if test "x$BUILD" = xscons; then
pip2 install --user mako;
fi
script:
- if test "x$BUILD" = xmeson; then
meson _build -Dbuild-tests=true;
ninja -C _build || travis_terminate 1;
ninja -C _build test || travis_terminate 1;
ninja -C _build install || travis_terminate 1;
fi
- if test "x$BUILD" = xscons; then
scons force_scons=1 || travis_terminate 1;
scons force_scons=1 check || travis_terminate 1;
fi

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@@ -1,135 +0,0 @@
# Mesa 3-D graphics library
#
# Copyright (C) 2010-2011 Chia-I Wu <olvaffe@gmail.com>
# Copyright (C) 2010-2011 LunarG Inc.
#
# Permission is hereby granted, free of charge, to any person obtaining a
# copy of this software and associated documentation files (the "Software"),
# to deal in the Software without restriction, including without limitation
# the rights to use, copy, modify, merge, publish, distribute, sublicense,
# and/or sell copies of the Software, and to permit persons to whom the
# Software is furnished to do so, subject to the following conditions:
#
# The above copyright notice and this permission notice shall be included
# in all copies or substantial portions of the Software.
#
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
# THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
# FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
# DEALINGS IN THE SOFTWARE.
ifeq ($(LOCAL_IS_HOST_MODULE),true)
LOCAL_CFLAGS += -D_GNU_SOURCE
endif
LOCAL_C_INCLUDES += \
$(MESA_TOP)/src \
$(MESA_TOP)/include
MESA_VERSION := $(shell cat $(MESA_TOP)/VERSION)
LOCAL_CFLAGS += \
-Wno-error \
-Werror=incompatible-pointer-types \
-Wno-unused-parameter \
-Wno-pointer-arith \
-Wno-missing-field-initializers \
-Wno-initializer-overrides \
-Wno-mismatched-tags \
-DPACKAGE_VERSION=\"$(MESA_VERSION)\" \
-DPACKAGE_BUGREPORT=\"https://gitlab.freedesktop.org/mesa/mesa/issues\"
# XXX: The following __STDC_*_MACROS defines should not be needed.
# It's likely due to a bug elsewhere, but let's temporarily add them
# here to fix the radeonsi build.
LOCAL_CFLAGS += \
-DANDROID_API_LEVEL=$(PLATFORM_SDK_VERSION) \
-DENABLE_SHADER_CACHE \
-D__STDC_CONSTANT_MACROS \
-D__STDC_LIMIT_MACROS \
-DHAVE___BUILTIN_EXPECT \
-DHAVE___BUILTIN_FFS \
-DHAVE___BUILTIN_FFSLL \
-DHAVE_DLFCN_H \
-DHAVE_FUNC_ATTRIBUTE_FLATTEN \
-DHAVE_FUNC_ATTRIBUTE_UNUSED \
-DHAVE_FUNC_ATTRIBUTE_FORMAT \
-DHAVE_FUNC_ATTRIBUTE_PACKED \
-DHAVE_FUNC_ATTRIBUTE_ALIAS \
-DHAVE_FUNC_ATTRIBUTE_NORETURN \
-DHAVE_FUNC_ATTRIBUTE_RETURNS_NONNULL \
-DHAVE_FUNC_ATTRIBUTE_WARN_UNUSED_RESULT \
-DHAVE___BUILTIN_CTZ \
-DHAVE___BUILTIN_POPCOUNT \
-DHAVE___BUILTIN_POPCOUNTLL \
-DHAVE___BUILTIN_CLZ \
-DHAVE___BUILTIN_CLZLL \
-DHAVE___BUILTIN_UNREACHABLE \
-DHAVE_PTHREAD=1 \
-DHAVE_DLADDR \
-DHAVE_DL_ITERATE_PHDR \
-DHAVE_LINUX_FUTEX_H \
-DHAVE_ENDIAN_H \
-DHAVE_ZLIB \
-DMAJOR_IN_SYSMACROS \
-DVK_USE_PLATFORM_ANDROID_KHR \
-fvisibility=hidden \
-fno-math-errno \
-fno-trapping-math \
-Wno-sign-compare
LOCAL_CPPFLAGS += \
-D__STDC_CONSTANT_MACROS \
-D__STDC_FORMAT_MACROS \
-D__STDC_LIMIT_MACROS \
-Wno-error=non-virtual-dtor \
-Wno-non-virtual-dtor
# mesa requires at least c99 compiler
LOCAL_CONLYFLAGS += \
-std=c99
# c11 timespec_get is part of bionic as well
# https://android-review.googlesource.com/c/718518
# This means releases from P and earlier won't need this
ifeq ($(filter 5 6 7 8 9, $(MESA_ANDROID_MAJOR_VERSION)),)
LOCAL_CFLAGS += -DHAVE_TIMESPEC_GET
endif
# Android's libc began supporting shm in Oreo
ifeq ($(shell test $(PLATFORM_SDK_VERSION) -ge 26 && echo true),true)
LOCAL_CFLAGS += -DHAVE_SYS_SHM_H
endif
ifeq ($(strip $(MESA_ENABLE_ASM)),true)
ifeq ($(TARGET_ARCH),x86)
LOCAL_CFLAGS += \
-DUSE_X86_ASM
endif
endif
ifeq ($(ARCH_ARM_HAVE_NEON),true)
LOCAL_CFLAGS_arm += -DUSE_ARM_ASM
endif
LOCAL_CFLAGS_arm64 += -DUSE_AARCH64_ASM
ifneq ($(LOCAL_IS_HOST_MODULE),true)
LOCAL_CFLAGS += -DHAVE_LIBDRM
LOCAL_SHARED_LIBRARIES += libdrm
endif
LOCAL_CFLAGS_32 += -DDEFAULT_DRIVER_DIR=\"/vendor/lib/$(MESA_DRI_MODULE_REL_PATH)\"
LOCAL_CFLAGS_64 += -DDEFAULT_DRIVER_DIR=\"/vendor/lib64/$(MESA_DRI_MODULE_REL_PATH)\"
LOCAL_PROPRIETARY_MODULE := true
# uncomment to keep the debug symbols
#LOCAL_STRIP_MODULE := false
ifeq ($(strip $(LOCAL_MODULE_TAGS)),)
LOCAL_MODULE_TAGS := optional
endif
# Quiet down the build system and remove any .h files from the sources
LOCAL_SRC_FILES := $(patsubst %.h, , $(LOCAL_SRC_FILES))

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@@ -1,123 +0,0 @@
# Mesa 3-D graphics library
#
# Copyright (C) 2010-2011 Chia-I Wu <olvaffe@gmail.com>
# Copyright (C) 2010-2011 LunarG Inc.
#
# Permission is hereby granted, free of charge, to any person obtaining a
# copy of this software and associated documentation files (the "Software"),
# to deal in the Software without restriction, including without limitation
# the rights to use, copy, modify, merge, publish, distribute, sublicense,
# and/or sell copies of the Software, and to permit persons to whom the
# Software is furnished to do so, subject to the following conditions:
#
# The above copyright notice and this permission notice shall be included
# in all copies or substantial portions of the Software.
#
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
# THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
# FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
# DEALINGS IN THE SOFTWARE.
# BOARD_GPU_DRIVERS should be defined. The valid values are
#
# classic drivers: i915 i965
# gallium drivers: swrast freedreno i915g nouveau kmsro r300g r600g radeonsi vc4 virgl vmwgfx etnaviv iris lima
#
# The main target is libGLES_mesa. For each classic driver enabled, a DRI
# module will also be built. DRI modules will be loaded by libGLES_mesa.
MESA_TOP := $(call my-dir)
MESA_ANDROID_MAJOR_VERSION := $(word 1, $(subst ., , $(PLATFORM_VERSION)))
ifneq ($(filter 2 4, $(MESA_ANDROID_MAJOR_VERSION)),)
$(error "Android 4.4 and earlier not supported")
endif
MESA_DRI_MODULE_REL_PATH := dri
MESA_DRI_MODULE_PATH := $(TARGET_OUT_SHARED_LIBRARIES)/$(MESA_DRI_MODULE_REL_PATH)
MESA_DRI_MODULE_UNSTRIPPED_PATH := $(TARGET_OUT_SHARED_LIBRARIES_UNSTRIPPED)/$(MESA_DRI_MODULE_REL_PATH)
MESA_DRI_LDFLAGS := -Wl,--build-id=sha1
MESA_COMMON_MK := $(MESA_TOP)/Android.common.mk
MESA_PYTHON2 := python
# Lists to convert driver names to boolean variables
# in form of <driver name>.<boolean make variable>
classic_drivers := i915.HAVE_I915_DRI i965.HAVE_I965_DRI
gallium_drivers := \
swrast.HAVE_GALLIUM_SOFTPIPE \
freedreno.HAVE_GALLIUM_FREEDRENO \
i915g.HAVE_GALLIUM_I915 \
nouveau.HAVE_GALLIUM_NOUVEAU \
kmsro.HAVE_GALLIUM_KMSRO \
r300g.HAVE_GALLIUM_R300 \
r600g.HAVE_GALLIUM_R600 \
radeonsi.HAVE_GALLIUM_RADEONSI \
vmwgfx.HAVE_GALLIUM_VMWGFX \
vc4.HAVE_GALLIUM_VC4 \
virgl.HAVE_GALLIUM_VIRGL \
etnaviv.HAVE_GALLIUM_ETNAVIV \
iris.HAVE_GALLIUM_IRIS \
lima.HAVE_GALLIUM_LIMA
ifeq ($(BOARD_GPU_DRIVERS),all)
MESA_BUILD_CLASSIC := $(filter HAVE_%, $(subst ., , $(classic_drivers)))
MESA_BUILD_GALLIUM := $(filter HAVE_%, $(subst ., , $(gallium_drivers)))
else
# Warn if we have any invalid driver names
$(foreach d, $(BOARD_GPU_DRIVERS), \
$(if $(findstring $(d).,$(classic_drivers) $(gallium_drivers)), \
, \
$(warning invalid GPU driver: $(d)) \
) \
)
MESA_BUILD_CLASSIC := $(strip $(foreach d, $(BOARD_GPU_DRIVERS), $(patsubst $(d).%,%, $(filter $(d).%, $(classic_drivers)))))
MESA_BUILD_GALLIUM := $(strip $(foreach d, $(BOARD_GPU_DRIVERS), $(patsubst $(d).%,%, $(filter $(d).%, $(gallium_drivers)))))
endif
ifeq ($(filter x86%,$(TARGET_ARCH)),)
MESA_BUILD_CLASSIC :=
endif
$(foreach d, $(MESA_BUILD_CLASSIC) $(MESA_BUILD_GALLIUM), $(eval $(d) := true))
# host and target must be the same arch to generate matypes.h
ifeq ($(TARGET_ARCH),$(HOST_ARCH))
MESA_ENABLE_ASM := true
else
MESA_ENABLE_ASM := false
endif
ifneq ($(filter true, $(HAVE_GALLIUM_RADEONSI)),)
MESA_ENABLE_LLVM := true
endif
define mesa-build-with-llvm
$(if $(filter $(MESA_ANDROID_MAJOR_VERSION), 4 5 6 7), \
$(warning Unsupported LLVM version in Android $(MESA_ANDROID_MAJOR_VERSION)),) \
$(eval LOCAL_CFLAGS += -DLLVM_AVAILABLE -DMESA_LLVM_VERSION_STRING=\"3.9\") \
$(eval LOCAL_SHARED_LIBRARIES += libLLVM)
endef
# add subdirectories
SUBDIRS := \
src/freedreno \
src/gbm \
src/loader \
src/mapi \
src/compiler \
src/mesa \
src/util \
src/egl \
src/amd \
src/broadcom \
src/intel \
src/mesa/drivers/dri \
src/vulkan \
src/panfrost \
INC_DIRS := $(call all-named-subdir-makefiles,$(SUBDIRS))
INC_DIRS += $(call all-named-subdir-makefiles,src/gallium)
include $(INC_DIRS)

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@@ -1,16 +0,0 @@
$(call add-clean-step, rm -rf $(PRODUCT_OUT)/obj/STATIC_LIBRARIES/libmesa_*_intermediates)
$(call add-clean-step, rm -rf $(PRODUCT_OUT)/obj/SHARED_LIBRARIES/i9*5_dri_intermediates)
$(call add-clean-step, rm -rf $(PRODUCT_OUT)/obj/SHARED_LIBRARIES/libglapi_intermediates)
$(call add-clean-step, rm -rf $(PRODUCT_OUT)/obj/SHARED_LIBRARIES/libGLES_mesa_intermediates)
$(call add-clean-step, rm -rf $(OUT_DIR)/host/$(HOST_OS)-$(HOST_ARCH)/obj/EXECUTABLES/mesa_*_intermediates)
$(call add-clean-step, rm -rf $(OUT_DIR)/host/$(HOST_OS)-$(HOST_ARCH)/obj/EXECUTABLES/glsl_compiler_intermediates)
$(call add-clean-step, rm -rf $(OUT_DIR)/host/$(HOST_OS)-$(HOST_ARCH)/obj/STATIC_LIBRARIES/libmesa_glsl_utils_intermediates)
$(call add-clean-step, rm -rf $(PRODUCT_OUT)/*/STATIC_LIBRARIES/libmesa_*_intermediates)
$(call add-clean-step, rm -rf $(PRODUCT_OUT)/*/SHARED_LIBRARIES/i9?5_dri_intermediates)
$(call add-clean-step, rm -rf $(PRODUCT_OUT)/*/SHARED_LIBRARIES/libglapi_intermediates)
$(call add-clean-step, rm -rf $(PRODUCT_OUT)/*/SHARED_LIBRARIES/libGLES_mesa_intermediates)
$(call add-clean-step, rm -rf $(HOST_OUT)/*/EXECUTABLES/mesa_*_intermediates)
$(call add-clean-step, rm -rf $(HOST_OUT)/*/EXECUTABLES/glsl_compiler_intermediates)
$(call add-clean-step, rm -rf $(HOST_OUT)/*/STATIC_LIBRARIES/libmesa_*_intermediates)
$(call add-clean-step, rm -rf $(PRODUCT_OUT)/*/SHARED_LIBRARIES/*_dri_intermediates)

1096
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108
Makefile.DJ Normal file
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@@ -0,0 +1,108 @@
# Mesa 3-D graphics library
# Version: 4.0
#
# Copyright (C) 1999 Brian Paul All Rights Reserved.
#
# Permission is hereby granted, free of charge, to any person obtaining a
# copy of this software and associated documentation files (the "Software"),
# to deal in the Software without restriction, including without limitation
# the rights to use, copy, modify, merge, publish, distribute, sublicense,
# and/or sell copies of the Software, and to permit persons to whom the
# Software is furnished to do so, subject to the following conditions:
#
# The above copyright notice and this permission notice shall be included
# in all copies or substantial portions of the Software.
#
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
# OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
# BRIAN PAUL BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN
# AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
# CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
# DOS/DJGPP makefile v1.4 for Mesa
#
# Copyright (C) 2002 - Borca Daniel
# Email : dborca@users.sourceforge.net
# Web : http://www.geocities.com/dborca
#
# Available options:
#
# Environment variables:
# CPU optimize for the given processor.
# default = pentium
# GLU=[mesa|sgi] specify GLU directory; can be `sgi' (requires GNU/C++)
# or `mesa'.
# default = mesa
# GLIDE path to Glide3 SDK; used with FX.
# default = $(TOP)/glide3
# FX=1 build for 3dfx Glide3. Note that this disables
# compilation of most DMesa code and requires fxMesa.
# As a consequence, you'll need the DJGPP Glide3
# library to build any application.
# default = no
# MATROX=1 build for Matrox Millennium I (MGA2064W) cards.
# This is experimental and not intensively tested.
# default = no
# HAVE_X86=1 optimize for i386.
# default = no
# HAVE_MMX=1 allow MMX specializations, provided your assembler
# supports MMX instruction set. However, the true CPU
# capabilities are checked at run-time to avoid crashes.
# default = no
# HAVE_SSE=1 (see HAVE_MMX)
# default = no
# HAVE_3DNOW=1 (see HAVE_MMX)
# default = no
#
# Targets:
# all: build everything
# libgl: build GL
# libglu: build GLU
# libglut: build GLUT
# clean: remove object files
# realclean: remove all generated files
#
.PHONY : all libgl libglu libglut clean realclean
CPU ?= pentium
GLU ?= mesa
CFLAGS = -Wall -W -pedantic
CFLAGS += -O2 -ffast-math -mcpu=$(CPU)
export CFLAGS
ifeq ($(wildcard $(addsuffix /rm.exe,$(subst ;, ,$(PATH)))),)
UNLINK = del $(subst /,\,$(1))
else
UNLINK = $(RM) $(1)
endif
all: libgl libglu libglut
libgl: lib
$(MAKE) -f Makefile.DJ -C src/mesa
libglu: lib
$(MAKE) -f Makefile.DJ -C src/glu/$(GLU)
libglut: lib
$(MAKE) -f Makefile.DJ -C src/glut/dos
lib:
mkdir lib
clean:
$(MAKE) -f Makefile.DJ clean -C src/mesa
$(MAKE) -f Makefile.DJ clean -C src/glu/mesa
$(MAKE) -f Makefile.DJ clean -C src/glu/sgi
$(MAKE) -f Makefile.DJ clean -C src/glut/dos
realclean: clean
-$(call UNLINK,lib/*.a)
-$(call UNLINK,lib/*.dxe)

622
Makefile.X11 Normal file
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@@ -0,0 +1,622 @@
# $Id: Makefile.X11,v 1.89.2.1 2003/11/24 12:01:39 keithw Exp $
# Mesa 3-D graphics library
# Version: 5.1
#
# Copyright (C) 1999-2003 Brian Paul All Rights Reserved.
#
# Permission is hereby granted, free of charge, to any person obtaining a
# copy of this software and associated documentation files (the "Software"),
# to deal in the Software without restriction, including without limitation
# the rights to use, copy, modify, merge, publish, distribute, sublicense,
# and/or sell copies of the Software, and to permit persons to whom the
# Software is furnished to do so, subject to the following conditions:
#
# The above copyright notice and this permission notice shall be included
# in all copies or substantial portions of the Software.
#
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
# OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
# BRIAN PAUL BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN
# AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
# CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
# Top-level makefile for Mesa
# To add a new configuration for your system add it to the list below
# then update the Make-config file.
SHELL = /bin/sh
default:
@echo "Type one of the following:"
@echo " make aix for IBM RS/6000 with AIX"
@echo " make aix-sl for IBM RS/6000, make shared libs"
@echo " make beos-r4 for BeOS R4"
@echo " make cygnus for Win95/NT using Cygnus-Win32"
@echo " make cygnus-linux for Win95/NT using Cygnus-Win32 under Linux"
@echo " make darwin for Darwin - Mac OS X"
@echo " make freebsd for FreeBSD systems with GCC"
@echo " make freebsd-386 for FreeBSD systems with GCC, w/ Intel assembly"
@echo " make gcc-sl for a generic system with GCC for shared libs"
@echo " make hpux9 for HP systems with HPUX 9.x"
@echo " make hpux9-sl for HP systems with HPUX 9.x, make shared libs"
@echo " make hpux9-gcc for HP systems with HPUX 9.x using GCC"
@echo " make hpux9-gcc-sl for HP systems with HPUX 9.x, GCC, make shared libs"
@echo " make hpux10 for HP systems with HPUX 10.x and 11.x"
@echo " make hpux10-sl for HP systems with HPUX 10.x and 11.x, shared libs"
@echo " make hpux10-gcc for HP systems with HPUX 10.x w/ GCC"
@echo " make hpux10-gcc-sl for HP systems with HPUX 10.x w/ GCC, shared libs"
@echo " make irix6-o32 for SGI systems with IRIX 6.x, make o32-bit libs"
@echo " make irix6-o32-dso for SGI systems with IRIX 6.x, make o32-bit DSOs"
@echo " make irix6-n32 for SGI systems with IRIX 6.x, make n32-bit libs"
@echo " make irix6-n32-dso for SGI systems with IRIX 6.x, make n32-bit DSOs"
@echo " make irix6-gcc-n32-sl for SGI systems with IRIX 6.x, GCC, make n32 DSOs"
@echo " make irix6-64 for SGI systems with IRIX 6.x, make 64-bit libs"
@echo " make irix6-64-dso for SGI systems with IRIX 6.x, make 64-bit DSOs"
@echo " make linux for Linux"
@echo " make linux-x86 for Linux with x86 optimizations"
@echo " make linux-ggi for Linux with libggi driver"
@echo " make linux-x86-ggi for Linux with libggi driver and x86 optimizations"
@echo " make linux-glide for Linux with 3Dfx Glide driver"
@echo " make linux-x86-glide for Linux with 3Dfx Glide driver and x86 opts"
@echo " make linux-alpha for Linux with Alpha optimizations"
@echo " make linux-alpha-static for Linux with Alpha opts, make static libs"
@echo " make linux-ppc for Linux with PowerPC opts"
@echo " make linux-ppc-static for Linux with PowerPC opts, make static libs"
@echo " make linux-sparc for Linux with Sparc optimzations"
@echo " make linux-sparc5 for Linux with Sparc5 optimizations"
@echo " make linux-sparc-ultra for Linux with UltraSparc optimizations"
@echo " make linux-osmesa16 for 16-bit/channel OSMesa"
@echo " make linux-osmesa16-static for 16-bit/channel OSMesa, make static libs"
@echo " make linux-osmesa32 for 32-bit/channel OSMesa"
@echo " make linux-solo for Linux standalone with dri drivers"
@echo " make linux-icc for Linux with the Intel C/C++ compiler"
@echo " make lynxos for LynxOS systems with GCC"
@echo " make mklinux for Linux on Power Macintosh"
@echo " make netbsd for NetBSD 1.0 systems with GCC"
@echo " make openbsd for OpenBSD systems"
@echo " make openstep for OpenStep/MacOSX Server systems"
@echo " make osf1 for DEC Alpha systems with OSF/1"
@echo " make qnx for QNX V4 systems with Watcom compiler"
@echo " make solaris-x86 for PCs with Solaris"
@echo " make solaris-x86-gcc for PCs with Solaris using GCC"
@echo " make sunos4 for Suns with SunOS 4.x"
@echo " make sunos4-sl for Suns with SunOS 4.x, make shared libs"
@echo " make sunos4-gcc for Suns with SunOS 4.x and GCC"
@echo " make sunos4-gcc-sl for Suns with SunOS 4.x, GCC, make shared libs"
@echo " make sunos5 for Suns with SunOS 5.x"
@echo " make sunos5-smp for Suns with SunOS 5.x, SMP optimization"
@echo " make sunos5-gcc for Suns with SunOS 5.x and GCC"
@echo " make ultrix-gcc for DEC systems with Ultrix and GCC"
@echo " make unixware for PCs running UnixWare"
@echo " make unixware-shared for PCs running UnixWare, shared libs"
@echo " make clean remove .o files"
@echo " make realclean remove .o, library and executable files"
# XXX we may have to split up this group of targets into those that
# have a C++ compiler and those that don't for the SI-GLU library.
aix aix-sl darwin freebsd freebsd-386 gcc-sl \
hpux9 hpux9-sl hpux9-gcc hpux9-gcc-sl \
hpux10 hpux10-sl hpux10-gcc hpux10-gcc-sl \
linux linux-debug \
linux-x86 linux-x86-sse linux-icc linux-x86-static linux-x86-debug \
linux-glide linux-x86-glide linux-glide-debug \
linux-alpha-static linux-alpha \
linux-ppc-static linux-ppc \
linux-sparc linux-sparc5 linux-sparc-ultra \
mklinux netbsd osf1 openbsd qnx \
solaris-x86 solaris-x86-gcc \
sunos4 sunos4-sl sunos4-gcc sunos4-gcc-sl sunos4-gcc-x11r6-sl \
sunos5 sunos5-smp sunos5-gcc \
ultrix-gcc unixware:
-mkdir lib
if [ -d src/mesa ] ; then touch src/mesa/depend ; fi
if [ -d src/glu/sgi ] ; then touch src/glu/sgi/depend ; fi
if [ -d src/glut/glx ] ; then touch src/glut/glx/depend ; fi
if [ -d src/glw ] ; then touch src/glw/depend ; fi
if [ -d src/mesa ] ; then cd src/mesa ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/glu/sgi ] ; then cd src/glu/sgi ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/glut/glx ] ; then cd src/glut/glx ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/demos ] ; then cd progs/demos ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/xdemos ] ; then cd progs/xdemos ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/samples ] ; then cd progs/samples ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/redbook ] ; then cd progs/redbook ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/glw ] ; then cd src/glw ; $(MAKE) -f Makefile.X11 $@ ; fi
gcc-mesa-sl:
if [ -d src ] ; then cd src ; $(MAKE) -f Makefile.X11 $@ ; fi
irix6-o32 irix6-o32-dso irix6-n32 irix6-n32-dso irix6-gcc-n32-sl:
-mkdir lib32
if [ -d src/mesa ] ; then touch src/mesa/depend ; fi
if [ -d src/glu/sgi ] ; then touch src/glu/sgi/depend ; fi
if [ -d src/glut/glx ] ; then touch src/glut/glx/depend ; fi
if [ -d src/glw ] ; then touch src/glw/depend ; fi
if [ -d src/mesa ] ; then cd src/mesa ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/glu/sgi ] ; then cd src/glu/sgi ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/glut/glx ] ; then cd src/glut/glx ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/demos ] ; then cd progs/demos ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/xdemos ] ; then cd progs/xdemos ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/samples ] ; then cd progs/samples ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/redbook ] ; then cd progs/redbook ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/glw ] ; then cd src/glw; $(MAKE) -f Makefile.X11 $@ ; fi
irix6-64 irix6-64-dso:
-mkdir lib64
if [ -d src/mesa ] ; then touch src/mesa/depend ; fi
if [ -d src/glu/sgi ] ; then touch src/glu/sgi/depend ; fi
if [ -d src/glut/glx ] ; then touch src/glut/glx/depend ; fi
if [ -d src/glw ] ; then touch src/glw/depend ; fi
if [ -d src/mesa ] ; then cd src/mesa ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/glu/sgi ] ; then cd src/glu/sgi ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/glut/glx ] ; then cd src/glut/glx ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/demos ] ; then cd progs/demos ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/xdemos ] ; then cd progs/xdemos ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/samples ] ; then cd progs/samples ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/redbook ] ; then cd progs/redbook ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/glw ] ; then cd src/glw; $(MAKE) -f Makefile.X11 $@ ; fi
beos-r4:
-mkdir lib
-rm src/mesa/depend
touch src/mesa/depend
-rm src/glu/sgi/depend
touch src/glu/sgi/depend
if [ -d src/mesa ] ; then cd src/mesa ; $(MAKE) -f Makefile.BeOS-R4 $@ ; fi
if [ -d src/glu/sgi ] ; then cd src/glu/sgi ; $(MAKE) -f Makefile.BeOS-R4 $@ ; fi
if [ -d src/glut/beos ] ; then cd src/glut/beos ; $(MAKE) -f Makefile.BeOS-R4 $@ ; fi
if [ -d src/glut/beos ] ; then cp src/glut/beos/obj*/libglut.so lib ; fi
if [ -d progs/beos ] ; then cd progs/beos ; $(MAKE) ; fi
if [ -d progs/demos ] ; then cd progs/demos ; $(MAKE) -f Makefile.BeOS-R4 $@ ; fi
if [ -d progs/samples ] ; then cd progs/samples ; $(MAKE) -f Makefile.BeOS-R4 $@ ; fi
if [ -d progs/redbook ] ; then cd progs/redbook ; $(MAKE) -f Makefile.BeOS-R4 $@ ; fi
cygnus cygnus-linux:
-mkdir lib
touch src/depend
touch src-glu/depend
if [ -d src/mesa ] ; then cd src/mesa ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/glu/sgi ] ; then cd src/glu/sgi ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/glut/glx ] ; then cd src/glut/glx ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/demos ] ; then cd progs/demos ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/xdemos ] ; then cd progs/xdemos ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/glw ] ; then cd src/glw ; $(MAKE) -f Makefile.X11 $@ ; fi
openstep:
-mkdir lib
cd src/mesa ; $(MAKE) -f Makefile.X11 "MYCC=${CC}" $@
cd src/glu/sgi ; $(MAKE) -f Makefile.X11 "MYCC=${CC}" $@
linux-ggi linux-x86-ggi:
-mkdir lib
touch src/depend
touch src/glu/sgi/depend
if [ -d src/glut/glx ] ; then touch src/glut/glx/depend ; fi
if [ -d src/glw ] ; then touch src/glw/depend ; fi
if [ -d src/mesa ] ; then cd src ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/glu/sgi ] ; then cd src/glu/sgi ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/glut/glx ] ; then cd src/glut/glx ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d ggi/demos ] ; then cd ggi/demos ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/demos ] ; then cd progs/demos ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/xdemos ] ; then cd progs/xdemos ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/samples ] ; then cd progs/samples ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/redbook ] ; then cd progs/redbook ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/glw ] ; then cd src/glw; $(MAKE) -f Makefile.X11 $@ ; fi
# if you change GGI_DEST please change it in ggimesa.conf, too.
DESTDIR=/usr/local
GGI_DEST=lib/ggi/mesa
linux-ggi-install linux-x86-ggi-install:
install -d $(DESTDIR)/$(GGI_DEST)/default $(DESTDIR)/$(GGI_DEST)/display $(DESTDIR)/etc/ggi
install -m 0755 src/GGI/default/*.so $(DESTDIR)/$(GGI_DEST)/default
install -m 0755 src/GGI/display/*.so $(DESTDIR)/$(GGI_DEST)/display
install -m 0644 src/GGI/ggimesa.conf $(DESTDIR)/etc/ggi
# if [ -z "`grep ggimesa $(DESTDIR)/etc/ggi/libggi.conf`" ]; then \
# echo ".include $(DESTDIR)/etc/ggi/ggimesa.conf" >> $(DESTDIR)/etc/ggi/libggi.conf ; \
# fi
linux-osmesa16 linux-osmesa16-static linux-osmesa32:
-mkdir lib
if [ -d src/mesa ] ; then touch src/mesa/depend ; fi
if [ -d src/mesa ] ; then cd src/mesa ; $(MAKE) -f Makefile.OSMesa16 $@ ; fi
linux-solo:
-mkdir lib
if [ -d src/mesa ] ; then touch src/mesa/depend ; fi
if [ -d src/glx/mini ] ; then touch src/glx/mini/depend ; fi
if [ -d src/glu/mini ] ; then touch src/glu/mini/depend ; fi
if [ -d src/glut/mini ] ; then touch src/glut/mini/depend ; fi
if [ -d src/mesa/drivers/dri/r200 ] ; then touch src/mesa/drivers/dri/r200/depend ; fi
if [ -d src/mesa/drivers/dri/r128 ] ; then touch src/mesa/drivers/dri/r128/depend ; fi
if [ -d src/mesa/drivers/dri/radeon ] ; then touch src/mesa/drivers/dri/radeon/depend ; fi
if [ -d src/mesa/drivers/dri/mga ] ; then touch src/mesa/drivers/dri/mga/depend ; fi
if [ -d src/mesa/drivers/dri/i810 ] ; then touch src/mesa/drivers/dri/i810/depend ; fi
if [ -d src/mesa/drivers/dri/i830 ] ; then touch src/mesa/drivers/dri/i830/depend ; fi
if [ -d src/mesa/drivers/dri/sis ] ; then touch src/mesa/drivers/dri/sis/depend ; fi
if [ -d src/mesa/drivers/dri/gamma ] ; then touch src/mesa/drivers/dri/gamma/depend ; fi
if [ -d src/mesa/drivers/dri/fb ] ; then touch src/mesa/drivers/dri/fb/depend ; fi
if [ -d src/glut/mini ] ; then touch src/glut/mini/depend ; fi
if [ -d progs/miniglx ] ; then touch progs/miniglx/depend ; fi
if [ -d progs/tests ] ; then touch progs/tests/depend ; fi
if [ -d src/mesa ] ; then cd src/mesa ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/mesa/drivers/dri/r200 ] ; then cd src/mesa/drivers/dri/r200 ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/mesa/drivers/dri/r128 ] ; then cd src/mesa/drivers/dri/r128 ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/mesa/drivers/dri/radeon ] ; then cd src/mesa/drivers/dri/radeon ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/mesa/drivers/dri/mga ] ; then cd src/mesa/drivers/dri/mga ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/mesa/drivers/dri/i810 ] ; then cd src/mesa/drivers/dri/i810 ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/mesa/drivers/dri/i830 ] ; then cd src/mesa/drivers/dri/i830 ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/mesa/drivers/dri/sis ] ; then cd src/mesa/drivers/dri/sis ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/mesa/drivers/dri/gamma ] ; then cd src/mesa/drivers/dri/gamma ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/mesa/drivers/dri/fb ] ; then cd src/mesa/drivers/dri/fb ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/glx/mini ] ; then cd src/glx/mini ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/glu/mini ] ; then cd src/glu/mini ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d src/glut/mini ] ; then cd src/glut/mini ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/miniglx ] ; then cd progs/miniglx ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/tests ] ; then cd progs/tests ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/demos ] ; then cd progs/demos ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/xdemos ] ; then cd progs/xdemos ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/samples ] ; then cd progs/samples ; $(MAKE) -f Makefile.X11 $@ ; fi
if [ -d progs/redbook ] ; then cd progs/redbook ; $(MAKE) -f Makefile.X11 $@ ; fi
# Remove .o files, emacs backup files, etc.
clean:
if ! [ -f src/mesa/depend ] ; then touch src/mesa/depend ; fi
if ! [ -f src/mesa/drivers/dri/r200/depend ]; then touch src/mesa/drivers/dri/r200/depend; fi
if ! [ -f src/mesa/drivers/dri/r128/depend ]; then touch src/mesa/drivers/dri/r128/depend; fi
if ! [ -f src/mesa/drivers/dri/radeon/depend ]; then touch src/mesa/drivers/dri/radeon/depend; fi
if ! [ -f src/mesa/drivers/dri/mga/depend ]; then touch src/mesa/drivers/dri/mga/depend; fi
if ! [ -f src/mesa/drivers/dri/fb/depend ]; then touch src/mesa/drivers/dri/fb/depend; fi
if ! [ -f src/glu/mesa/depend ] ; then touch src/glu/mesa/depend ; fi
if ! [ -f src/glu/sgi/depend ] ; then touch src/glu/sgi/depend ; fi
if ! [ -f src/glu/mini/depend ] ; then touch src/glu/mini/depend ; fi
if ! [ -f src/glut/glx/depend ] ; then touch src/glut/glx/depend ; fi
if ! [ -f src/glut/mini/depend ] ; then touch src/glut/mini/depend ; fi
if ! [ -f src/glx/mini/depend ] ; then touch src/glx/mini/depend ; fi
if ! [ -f progs/tests/depend ] ; then touch progs/tests/depend ; fi
if ! [ -f progs/miniglx/depend ] ; then touch progs/miniglx/depend ; fi
-rm -f include/GL/*~
cd src/mesa && $(MAKE) -f Makefile.X11 $@ || true
cd src/mesa/drivers/dri/r200 && $(MAKE) -f Makefile.X11 $@ || true
cd src/mesa/drivers/dri/r128 && $(MAKE) -f Makefile.X11 $@ || true
cd src/mesa/drivers/dri/radeon && $(MAKE) -f Makefile.X11 $@ || true
cd src/mesa/drivers/dri/mga && $(MAKE) -f Makefile.X11 $@ || true
cd src/mesa/drivers/dri/fb && $(MAKE) -f Makefile.X11 $@ || true
cd src/glu/mesa && $(MAKE) -f Makefile.X11 $@ || true
cd src/glu/sgi && $(MAKE) -f Makefile.X11 $@ || true
cd src/glu/mini && $(MAKE) -f Makefile.X11 $@ || true
cd src/glut/glx && $(MAKE) -f Makefile.X11 $@ || true
cd src/glut/mini && $(MAKE) -f Makefile.X11 $@ || true
cd src/glw && $(MAKE) -f Makefile.X11 $@ || true
cd src/glx/mini && $(MAKE) -f Makefile.X11 $@ || true
cd progs/demos && $(MAKE) -f Makefile.X11 $@ || true
cd progs/redbook && $(MAKE) -f Makefile.X11 $@ || true
cd progs/xdemos && $(MAKE) -f Makefile.X11 $@ || true
cd progs/samples && $(MAKE) -f Makefile.X11 $@ || true
cd progs/tests && $(MAKE) -f Makefile.X11 $@ || true
cd progs/miniglx && $(MAKE) -f Makefile.X11 $@ || true
if [ -f src/mesa/depend ] ; then rm src/mesa/depend ; fi
if [ -f src/mesa/drivers/dri/r200/depend ]; then rm -f src/mesa/drivers/dri/r200/depend; fi
if [ -f src/mesa/drivers/dri/r128/depend ]; then rm -f src/mesa/drivers/dri/r128/depend; fi
if [ -f src/mesa/drivers/dri/radeon/depend ]; then rm -f src/mesa/drivers/dri/radeon/depend; fi
if [ -f src/mesa/drivers/dri/mga/depend ]; then rm -f src/mesa/drivers/dri/mga/depend; fi
if [ -f src/mesa/drivers/dri/fb/depend ]; then rm -f src/mesa/drivers/dri/fb/depend; fi
if [ -f src/glu/mesa/depend ] ; then rm -f src/glu/mesa/depend ; fi
if [ -f src/glu/sgi/depend ] ; then rm -f src/glu/sgi/depend ; fi
if [ -f src/glu/mini/depend ] ; then rm -f src/glu/mini/depend ; fi
if [ -f src/glut/glx/depend ] ; then rm -f src/glut/glx/depend ; fi
if [ -f src/glut/mini/depend ] ; then rm -f src/glut/mini/depend ; fi
if [ -f src/glx/mini/depend ] ; then rm -f src/glx/mini/depend ; fi
if [ -f progs/tests/depend ] ; then rm -f progs/tests/depend ; fi
if [ -f progs/miniglx/depend ] ; then rm -f progs/miniglx/depend ; fi
# Remove everything that can be remade
realclean: clean
-rm -fr lib lib32 lib64
cd progs/demos && $(MAKE) -f Makefile.X11 realclean || true
cd progs/xdemos && $(MAKE) -f Makefile.X11 realclean || true
cd progs/redbook && $(MAKE) -f Makefile.X11 realclean || true
cd progs/samples && $(MAKE) -f Makefile.X11 realclean || true
# Remove everything not in CVS
cvsclean: realclean
-rm -f acinclude.m4 aclocal.m4
-rm -f conf.h conf.h.in config.guess config.log config.status
-rm -f config.sub configure
-rm -f install-sh libtool ltmain.sh Makefile.in
-rm -f missing mkinstalldirs stamp-h stamp-h.in
DIRECTORY = Mesa-5.1
LIB_NAME = MesaLib-5.1
DEMO_NAME = MesaDemos-5.1
GLU_NAME = MesaGLU-5.1
GLUT_NAME = GLUT-3.7
LIB_FILES = \
$(DIRECTORY)/Makefile* \
$(DIRECTORY)/Make-config \
$(DIRECTORY)/descrip.mms \
$(DIRECTORY)/mms-config. \
$(DIRECTORY)/Mesa.dsw \
$(DIRECTORY)/bin/mklib* \
$(DIRECTORY)/docs/*.html \
$(DIRECTORY)/docs/COPYING \
$(DIRECTORY)/docs/INSTALL.GNU \
$(DIRECTORY)/docs/README.* \
$(DIRECTORY)/docs/RELNOTES* \
$(DIRECTORY)/docs/VERSIONS \
$(DIRECTORY)/docs/*.spec \
$(DIRECTORY)/include/GL/internal/glcore.h \
$(DIRECTORY)/include/GL/dmesa.h \
$(DIRECTORY)/include/GL/amesa.h \
$(DIRECTORY)/include/GL/fxmesa.h \
$(DIRECTORY)/include/GL/ggimesa.h \
$(DIRECTORY)/include/GL/gl.h \
$(DIRECTORY)/include/GL/glext.h \
$(DIRECTORY)/include/GL/gl_mangle.h \
$(DIRECTORY)/include/GL/glu.h \
$(DIRECTORY)/include/GL/glu_mangle.h \
$(DIRECTORY)/include/GL/glx.h \
$(DIRECTORY)/include/GL/glxext.h \
$(DIRECTORY)/include/GL/glx_mangle.h \
$(DIRECTORY)/include/GL/mesa_wgl.h \
$(DIRECTORY)/include/GL/mglmesa.h \
$(DIRECTORY)/include/GL/osmesa.h \
$(DIRECTORY)/include/GL/svgamesa.h \
$(DIRECTORY)/include/GL/ugl*.h \
$(DIRECTORY)/include/GL/vms_x_fix.h \
$(DIRECTORY)/include/GL/wmesa.h \
$(DIRECTORY)/include/GL/xmesa.h \
$(DIRECTORY)/include/GL/xmesa_x.h \
$(DIRECTORY)/include/GL/xmesa_xf86.h \
$(DIRECTORY)/src/mesa/Makefile* \
$(DIRECTORY)/src/mesa/descrip.mms \
$(DIRECTORY)/src/mesa/depend \
$(DIRECTORY)/src/mesa/main/*.[chS] \
$(DIRECTORY)/src/mesa/main/main.dsp \
$(DIRECTORY)/src/mesa/glapi/*.[chS] \
$(DIRECTORY)/src/mesa/glapi/glapi.dsp \
$(DIRECTORY)/src/mesa/array_cache/*.[ch] \
$(DIRECTORY)/src/mesa/array_cache/array_cache.dsp \
$(DIRECTORY)/src/mesa/math/*.[ch] \
$(DIRECTORY)/src/mesa/math/math.dsp \
$(DIRECTORY)/src/mesa/swrast/*.[ch] \
$(DIRECTORY)/src/mesa/swrast/swrast.dsp \
$(DIRECTORY)/src/mesa/swrast_setup/*.[ch] \
$(DIRECTORY)/src/mesa/swrast_setup/swrast_setup.dsp \
$(DIRECTORY)/src/mesa/tnl/*.[ch] \
$(DIRECTORY)/src/mesa/tnl/tnl.dsp \
$(DIRECTORY)/src/mesa/tnl_dd/*.[ch] \
$(DIRECTORY)/src/mesa/tnl_dd/imm/*.[ch] \
$(DIRECTORY)/src/mesa/tnl_dd/imm/NOTES.imm \
$(DIRECTORY)/src/mesa/drivers/common/*.[ch] \
$(DIRECTORY)/src/mesa/drivers/dos/*.[chS] \
$(DIRECTORY)/src/mesa/drivers/dos/mga/*.[ch] \
$(DIRECTORY)/src/mesa/drivers/beos/*.cpp \
$(DIRECTORY)/src/mesa/drivers/glide/*.[ch] \
$(DIRECTORY)/src/mesa/drivers/glide/*.def \
$(DIRECTORY)/src/mesa/drivers/ggi/*.[ch] \
$(DIRECTORY)/src/mesa/drivers/ggi/ggimesa.conf.in \
$(DIRECTORY)/src/mesa/drivers/ggi/default/*.c \
$(DIRECTORY)/src/mesa/drivers/ggi/default/genkgi.conf.in \
$(DIRECTORY)/src/mesa/drivers/ggi/display/*.c \
$(DIRECTORY)/src/mesa/drivers/ggi/display/fbdev.conf.in \
$(DIRECTORY)/src/mesa/drivers/ggi/include/ggi/mesa/*.h \
$(DIRECTORY)/src/mesa/drivers/osmesa/Makefile.win \
$(DIRECTORY)/src/mesa/drivers/osmesa/osmesa.def \
$(DIRECTORY)/src/mesa/drivers/osmesa/osmesa.dsp \
$(DIRECTORY)/src/mesa/drivers/osmesa/*.[ch] \
$(DIRECTORY)/src/mesa/drivers/svga/*.[ch] \
$(DIRECTORY)/src/mesa/drivers/windows/*/*.[ch] \
$(DIRECTORY)/src/mesa/drivers/windows/*/*.def \
$(DIRECTORY)/src/mesa/drivers/windows/*/*.dsp \
$(DIRECTORY)/src/mesa/drivers/x11/*.[ch] \
$(DIRECTORY)/src/mesa/sparc/*.[chS] \
$(DIRECTORY)/src/mesa/x86/*.[ch] \
$(DIRECTORY)/src/mesa/x86/*.S \
$(DIRECTORY)/src/glu/sgi/Makefile.X11 \
$(DIRECTORY)/src/glu/sgi/Makefile.win \
$(DIRECTORY)/src/glu/sgi/Makefile.DJ \
$(DIRECTORY)/src/glu/sgi/cc*.txt \
$(DIRECTORY)/src/glu/sgi/glu.def \
$(DIRECTORY)/src/glu/sgi/glu.dsp \
$(DIRECTORY)/src/glu/sgi/dummy.cc \
$(DIRECTORY)/src/glu/sgi/descrip.mms \
$(DIRECTORY)/src/glu/sgi/mesaglu.opt \
$(DIRECTORY)/src/glu/sgi/include/gluos.h \
$(DIRECTORY)/src/glu/sgi/libnurbs/interface/*.h \
$(DIRECTORY)/src/glu/sgi/libnurbs/interface/*.cc \
$(DIRECTORY)/src/glu/sgi/libnurbs/internals/*.h \
$(DIRECTORY)/src/glu/sgi/libnurbs/internals/*.cc \
$(DIRECTORY)/src/glu/sgi/libnurbs/nurbtess/*.h \
$(DIRECTORY)/src/glu/sgi/libnurbs/nurbtess/*.cc \
$(DIRECTORY)/src/glu/sgi/libtess/README \
$(DIRECTORY)/src/glu/sgi/libtess/alg-outline \
$(DIRECTORY)/src/glu/sgi/libtess/*.[ch] \
$(DIRECTORY)/src/glu/sgi/libutil/*.[ch] \
$(DIRECTORY)/src/glu/mesa/README[12] \
$(DIRECTORY)/src/glu/mesa/Makefile* \
$(DIRECTORY)/src/glu/mesa/descrip.mms \
$(DIRECTORY)/src/glu/mesa/mms_depend \
$(DIRECTORY)/src/glu/mesa/*.def \
$(DIRECTORY)/src/glu/mesa/depend \
$(DIRECTORY)/src/glu/mesa/*.[ch] \
$(DIRECTORY)/src/glw/*.[ch] \
$(DIRECTORY)/src/glw/Makefile* \
$(DIRECTORY)/src/glw/README \
$(DIRECTORY)/progs/util/README \
$(DIRECTORY)/progs/util/*.[ch] \
$(DIRECTORY)/progs/util/sampleMakefile \
$(DIRECTORY)/vms/analyze_map.com \
$(DIRECTORY)/vms/xlib.opt \
$(DIRECTORY)/vms/xlib_share.opt
DEMO_FILES = \
$(DIRECTORY)/include/GL/glut.h \
$(DIRECTORY)/include/GL/glutf90.h \
$(DIRECTORY)/src/glut/glx/Makefile* \
$(DIRECTORY)/src/glut/glx/depend \
$(DIRECTORY)/src/glut/glx/*def \
$(DIRECTORY)/src/glut/glx/descrip.mms \
$(DIRECTORY)/src/glut/glx/mms_depend \
$(DIRECTORY)/src/glut/glx/glut.dsp \
$(DIRECTORY)/src/glut/glx/*.[ch] \
$(DIRECTORY)/src/glut/dos/*.[ch] \
$(DIRECTORY)/src/glut/dos/Makefile.DJ \
$(DIRECTORY)/src/glut/dos/PC_HW/*.[chS] \
$(DIRECTORY)/progs/images/* \
$(DIRECTORY)/progs/demos/Makefile* \
$(DIRECTORY)/progs/demos/descrip.mms \
$(DIRECTORY)/progs/demos/*.[ch] \
$(DIRECTORY)/progs/demos/*.cxx \
$(DIRECTORY)/progs/demos/*.dat \
$(DIRECTORY)/progs/demos/README \
$(DIRECTORY)/progs/demos/Windows/* \
$(DIRECTORY)/progs/xdemos/Makefile* \
$(DIRECTORY)/progs/xdemos/descrip.mms \
$(DIRECTORY)/progs/xdemos/*.[chf] \
$(DIRECTORY)/progs/redbook/Makefile* \
$(DIRECTORY)/progs/redbook/README \
$(DIRECTORY)/progs/redbook/*.[ch] \
$(DIRECTORY)/progs/samples/Makefile* \
$(DIRECTORY)/progs/samples/README \
$(DIRECTORY)/progs/samples/*.c \
$(DIRECTORY)/progs/windml/Makefile.ugl \
$(DIRECTORY)/progs/windml/*.c \
$(DIRECTORY)/progs/windml/*.bmp \
$(DIRECTORY)/progs/ggi/*.c
SI_GLU_FILES = \
$(DIRECTORY)/Makefile* \
$(DIRECTORY)/Make-config \
$(DIRECTORY)/bin/mklib* \
$(DIRECTORY)/include/GL/glu.h \
$(DIRECTORY)/src/glu/sgi/Makefile.X11 \
$(DIRECTORY)/src/glu/sgi/include/gluos.h \
$(DIRECTORY)/src/glu/sgi/libnurbs/interface/*.h \
$(DIRECTORY)/src/glu/sgi/libnurbs/interface/*.cc \
$(DIRECTORY)/src/glu/sgi/libnurbs/internals/*.h \
$(DIRECTORY)/src/glu/sgi/libnurbs/internals/*.cc \
$(DIRECTORY)/src/glu/sgi/libnurbs/nurbstess/*.h \
$(DIRECTORY)/src/glu/sgi/libnurbs/nurbstess/*.cc \
$(DIRECTORY)/src/glu/sgi/libtess/README \
$(DIRECTORY)/src/glu/sgi/libtess/alg-outline \
$(DIRECTORY)/src/glu/sgi/libtess/*.[ch] \
$(DIRECTORY)/src/glu/sgi/libutil/*.[ch]
GLU_FILES = \
$(DIRECTORY)/Makefile* \
$(DIRECTORY)/Make-config \
$(DIRECTORY)/bin/mklib* \
$(DIRECTORY)/include/GL/gl.h \
$(DIRECTORY)/include/GL/gl_mangle.h \
$(DIRECTORY)/include/GL/glext.h \
$(DIRECTORY)/include/GL/glu.h \
$(DIRECTORY)/include/GL/glu_mangle.h \
$(DIRECTORY)/src/glu/mesa/README[12] \
$(DIRECTORY)/src/glu/mesa/Makefile* \
$(DIRECTORY)/src/glu/mesa/descrip.mms \
$(DIRECTORY)/src/glu/mesa/mms_depend \
$(DIRECTORY)/src/glu/mesa/*.def \
$(DIRECTORY)/src/glu/mesa/depend \
$(DIRECTORY)/src/glu/mesa/*.[ch]
GLUT_FILES = \
$(DIRECTORY)/Makefile* \
$(DIRECTORY)/Make-config \
$(DIRECTORY)/bin/mklib* \
$(DIRECTORY)/include/GL/gl.h \
$(DIRECTORY)/include/GL/gl_mangle.h \
$(DIRECTORY)/include/GL/glext.h \
$(DIRECTORY)/include/GL/glu.h \
$(DIRECTORY)/include/GL/glu_mangle.h \
$(DIRECTORY)/include/GL/glut.h \
$(DIRECTORY)/include/GL/glutf90.h \
$(DIRECTORY)/src/glut/glx/Makefile* \
$(DIRECTORY)/src/glut/glx/depend \
$(DIRECTORY)/src/glut/glx/*def \
$(DIRECTORY)/src/glut/glx/descrip.mms \
$(DIRECTORY)/src/glut/glx/mms_depend \
$(DIRECTORY)/src/glut/glx/*.[ch]
lib_gz:
cp Makefile.X11 Makefile ; \
cd .. ; \
tar -cvf $(LIB_NAME).tar $(LIB_FILES) ; \
gzip $(LIB_NAME).tar ; \
mv $(LIB_NAME).tar.gz $(DIRECTORY)
demo_gz:
cd .. ; \
tar -cvf $(DEMO_NAME).tar $(DEMO_FILES) ; \
gzip $(DEMO_NAME).tar ; \
mv $(DEMO_NAME).tar.gz $(DIRECTORY)
lib_bz2:
cp Makefile.X11 Makefile ; \
cd .. ; \
tar -cvf $(LIB_NAME).tar $(LIB_FILES) ; \
bzip2 $(LIB_NAME).tar ; \
mv $(LIB_NAME).tar.bz2 $(DIRECTORY)
demo_bz2:
cd .. ; \
tar -cvf $(DEMO_NAME).tar $(DEMO_FILES) ; \
bzip2 $(DEMO_NAME).tar ; \
mv $(DEMO_NAME).tar.bz2 $(DIRECTORY)
lib_zip:
-rm $(LIB_NAME).zip ; \
cp Makefile.X11 Makefile ; \
cd .. ; \
zip -r $(LIB_NAME).zip $(LIB_FILES) ; \
mv $(LIB_NAME).zip $(DIRECTORY)
demo_zip:
-rm $(DEMO_NAME).zip ; \
cd .. ; \
zip -r $(DEMO_NAME).zip $(DEMO_FILES) ; \
mv $(DEMO_NAME).zip $(DIRECTORY)
md5:
@-md5sum $(LIB_NAME).tar.gz
@-md5sum $(LIB_NAME).tar.bz2
@-md5sum $(LIB_NAME).zip
@-md5sum $(DEMO_NAME).tar.gz
@-md5sum $(DEMO_NAME).tar.bz2
@-md5sum $(DEMO_NAME).zip
# Everything for new Mesa release:
tarballs: lib_gz demo_gz lib_bz2 demo_bz2 lib_zip demo_zip md5
# not used
glu_gz:
cp Makefile.X11 Makefile ; \
cd .. ; \
tar -cvf $(GLU_NAME).tar $(GLU_FILES) ; \
gzip $(GLU_NAME).tar ; \
mv $(GLU_NAME).tar.gz $(DIRECTORY)
glut_gz:
cp Makefile.X11 Makefile ; \
cd .. ; \
tar -cvf $(GLUT_NAME).tar $(GLUT_FILES) ; \
gzip $(GLUT_NAME).tar ; \
mv $(GLUT_NAME).tar.gz $(DIRECTORY)

91
Makefile.mgw Normal file
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@@ -0,0 +1,91 @@
# Mesa 3-D graphics library
# Version: 4.0
#
# Copyright (C) 1999 Brian Paul All Rights Reserved.
#
# Permission is hereby granted, free of charge, to any person obtaining a
# copy of this software and associated documentation files (the "Software"),
# to deal in the Software without restriction, including without limitation
# the rights to use, copy, modify, merge, publish, distribute, sublicense,
# and/or sell copies of the Software, and to permit persons to whom the
# Software is furnished to do so, subject to the following conditions:
#
# The above copyright notice and this permission notice shall be included
# in all copies or substantial portions of the Software.
#
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
# OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
# BRIAN PAUL BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN
# AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
# CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
# MinGW makefile v1.0 for Mesa
#
# Copyright (C) 2002 - Borca Daniel
# Email : dborca@users.sourceforge.net
# Web : http://www.geocities.com/dborca
#
# Available options:
#
# Environment variables:
# CPU optimize for the given processor.
# default = pentium
# GLIDE path to Glide3 SDK; used with FX.
# default = $(TOP)/glide3
# FX=1 build for 3dfx Glide3. Note that this disables
# compilation of most WMesa code and requires fxMesa.
# As a consequence, you'll need the Win32 Glide3
# library to build any application.
# default = no
# HAVE_X86=1 optimize for i386.
# default = no
# HAVE_MMX=1 allow MMX specializations, provided your assembler
# supports MMX instruction set. However, the true CPU
# capabilities are checked at run-time to avoid crashes.
# default = no
# HAVE_SSE=1 (see HAVE_MMX)
# default = no
# HAVE_3DNOW=1 (see HAVE_MMX)
# default = no
#
# Targets:
# all: build everything
# libgl: build GL
# clean: remove object files
# realclean: remove all generated files
#
.PHONY : all libgl clean realclean
CPU ?= pentium
CFLAGS = -Wall -W -pedantic
CFLAGS += -O2 -ffast-math -mcpu=$(CPU)
export CFLAGS
ifeq ($(wildcard $(addsuffix /rm.exe,$(subst ;, ,$(PATH)))),)
UNLINK = del $(subst /,\,$(1))
else
UNLINK = $(RM) $(1)
endif
all: libgl
libgl: lib
$(MAKE) -f Makefile.mgw -C src/mesa
lib:
mkdir lib
clean:
$(MAKE) -f Makefile.mgw clean -C src/mesa
realclean: clean
-$(call UNLINK,lib/*.a)
-$(call UNLINK,lib/*.dll)

87
Makefile.wfx Normal file
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@@ -0,0 +1,87 @@
# Mesa 3-D graphics library
# Version: 5.1
#
# Copyright (C) 1999-2003 Brian Paul All Rights Reserved.
#
# Permission is hereby granted, free of charge, to any person obtaining a
# copy of this software and associated documentation files (the "Software"),
# to deal in the Software without restriction, including without limitation
# the rights to use, copy, modify, merge, publish, distribute, sublicense,
# and/or sell copies of the Software, and to permit persons to whom the
# Software is furnished to do so, subject to the following conditions:
#
# The above copyright notice and this permission notice shall be included
# in all copies or substantial portions of the Software.
#
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
# OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
# BRIAN PAUL BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN
# AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
# CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
# Win32/FX makefile for Mesa
#
# Copyright (c) 2003 - Hiroshi Morii
# Email : koolsmoky@users.sourceforge.net
# URL : http://www.3dfxzone.it/koolsmoky
# Debug build : nmake -f Makefile.wfx debug
# Optimized build : nmake -f Makefile.wfx
# Remove objects : nmake -f Makefile.wfx clean
# Remove files in bin, lib : nmake -f Makefile.wfx clobber
# Remove all generated files : nmake -f Makefile.wfx realclean
# Build the libs
SUBDIRS = src\mesa.dir
DBGBUILD = $(SUBDIRS:.dir=.debug)
CLEAN = $(SUBDIRS:.dir=.clean)
CLOBBER = $(SUBDIRS:.dir=.clobber)
REALCLEAN = $(SUBDIRS:.dir=.realclean)
LIBDIR = lib
# default rule
default : $(LIBDIR) $(SUBDIRS)
# debug build rules
debug : $(LIBDIR) $(DBGBUILD)
# cleanup rules
clean : $(CLEAN)
clobber : $(CLOBBER)
realclean : $(REALCLEAN)
# inference rules
$(LIBDIR):
@echo.
@mkdir $(LIBDIR)
$(SUBDIRS):
@echo.
@cd $*
@nmake -f Makefile.wfx
@cd ..
$(DBGBUILD):
@echo.
@cd $*
@nmake -f Makefile.wfx DEBUG=1
@cd ..
$(CLEAN):
@echo.
@cd $*
@nmake -f Makefile.wfx clean
@cd ..
$(CLOBBER):
@echo.
@cd $*
@nmake -f Makefile.wfx clobber
@cd ..
$(REALCLEAN):
@echo.
@cd $*
@nmake -f Makefile.wfx realclean
@cd ..

179
Mesa.dsw Normal file
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Microsoft Developer Studio Workspace File, Format Version 6.00
# WARNING: DO NOT EDIT OR DELETE THIS WORKSPACE FILE!
###############################################################################
Project: "array_cache"=".\SRC\MESA\array_cache\array_cache.dsp" - Package Owner=<4>
Package=<5>
{{{
}}}
Package=<4>
{{{
}}}
###############################################################################
Project: "gdi"=".\src\mesa\drivers\windows\gdi\gdi.dsp" - Package Owner=<4>
Package=<5>
{{{
}}}
Package=<4>
{{{
Begin Project Dependency
Project_Dep_Name array_cache
End Project Dependency
Begin Project Dependency
Project_Dep_Name main
End Project Dependency
Begin Project Dependency
Project_Dep_Name math
End Project Dependency
Begin Project Dependency
Project_Dep_Name swrast_setup
End Project Dependency
Begin Project Dependency
Project_Dep_Name swrast
End Project Dependency
Begin Project Dependency
Project_Dep_Name tnl
End Project Dependency
Begin Project Dependency
Project_Dep_Name glapi
End Project Dependency
}}}
###############################################################################
Project: "glapi"=".\SRC\MESA\glapi\glapi.dsp" - Package Owner=<4>
Package=<5>
{{{
}}}
Package=<4>
{{{
}}}
###############################################################################
Project: "glu"=".\src\glu\sgi\glu.dsp" - Package Owner=<4>
Package=<5>
{{{
}}}
Package=<4>
{{{
Begin Project Dependency
Project_Dep_Name gdi
End Project Dependency
}}}
###############################################################################
Project: "glut"=".\src\glut\glx\glut.dsp" - Package Owner=<4>
Package=<5>
{{{
}}}
Package=<4>
{{{
Begin Project Dependency
Project_Dep_Name glu
End Project Dependency
}}}
###############################################################################
Project: "main"=".\SRC\MESA\main\main.dsp" - Package Owner=<4>
Package=<5>
{{{
}}}
Package=<4>
{{{
}}}
###############################################################################
Project: "math"=".\SRC\MESA\math\math.dsp" - Package Owner=<4>
Package=<5>
{{{
}}}
Package=<4>
{{{
}}}
###############################################################################
Project: "osmesa"=".\SRC\MESA\DRIVERS\osmesa\osmesa.dsp" - Package Owner=<4>
Package=<5>
{{{
}}}
Package=<4>
{{{
Begin Project Dependency
Project_Dep_Name gdi
End Project Dependency
}}}
###############################################################################
Project: "swrast"=".\SRC\MESA\swrast\swrast.dsp" - Package Owner=<4>
Package=<5>
{{{
}}}
Package=<4>
{{{
}}}
###############################################################################
Project: "swrast_setup"=".\SRC\MESA\swrast_setup\swrast_setup.dsp" - Package Owner=<4>
Package=<5>
{{{
}}}
Package=<4>
{{{
}}}
###############################################################################
Project: "tnl"=".\SRC\MESA\tnl\tnl.dsp" - Package Owner=<4>
Package=<5>
{{{
}}}
Package=<4>
{{{
}}}
###############################################################################
Global:
Package=<5>
{{{
}}}
Package=<3>
{{{
}}}
###############################################################################

View File

@@ -1,60 +0,0 @@
`Mesa <https://mesa3d.org>`_ - The 3D Graphics Library
======================================================
Source
------
This repository lives at https://gitlab.freedesktop.org/mesa/mesa.
Other repositories are likely forks, and code found there is not supported.
Build & install
---------------
You can find more information in our documentation (`docs/install.html
<https://mesa3d.org/install.html>`_), but the recommended way is to use
Meson (`docs/meson.html <https://mesa3d.org/meson.html>`_):
.. code-block:: sh
$ mkdir build
$ cd build
$ meson ..
$ sudo ninja install
Support
-------
Many Mesa devs hang on IRC; if you're not sure which channel is
appropriate, you should ask your question on `Freenode's #dri-devel
<irc://chat.freenode.net#dri-devel>`_, someone will redirect you if
necessary.
Remember that not everyone is in the same timezone as you, so it might
take a while before someone qualified sees your question.
To figure out who you're talking to, or which nick to ping for your
question, check out `Who's Who on IRC
<https://dri.freedesktop.org/wiki/WhosWho/>`_.
The next best option is to ask your question in an email to the
mailing lists: `mesa-dev\@lists.freedesktop.org
<https://lists.freedesktop.org/mailman/listinfo/mesa-dev>`_
Bug reports
-----------
If you think something isn't working properly, please file a bug report
(`docs/bugs.html <https://mesa3d.org/bugs.html>`_).
Contributing
------------
Contributions are welcome, and step-by-step instructions can be found in our
documentation (`docs/submittingpatches.html
<https://mesa3d.org/submittingpatches.html>`_).
Note that Mesa uses email mailing-lists for patches submission, review and
discussions.

120
REVIEWERS
View File

@@ -1,120 +0,0 @@
Overview:
This file is similar in syntax (or more precisly a subset) of what is
used by the MAINTAINERS file in the linux kernel.
The purpose is not exactly the same the MAINTAINERS file in the linux
kernel, as there are not official/formal maintainers of different
subsystems in mesa, but is meant to give an idea of who to CC for
various patches for review.
Descriptions of section entries:
R: Designated reviewer: FullName <address@domain>
These reviewers should be CCed on patches.
F: Files and directories with wildcard patterns.
A trailing slash includes all files and subdirectory files.
F: drivers/net/ all files in and below drivers/net
F: drivers/net/* all files in drivers/net, but not below
F: */net/* all files in "any top level directory"/net
One pattern per line. Multiple F: lines acceptable.
Maintainers List (try to look for most precise areas first)
Note: this is an opt-in system, I have not tried to add anyone who hasn't
either asked me or sent a patch to add themselves.
-----------------------------------
NIR
R: Jason Ekstrand <jason@jlekstrand.net>
F: src/compiler/nir/
DOCUMENTATION
R: Emil Velikov <emil.l.velikov@gmail.com>
R: Eric Engestrom <eric@engestrom.ch>
F: docs/
F: doxygen/
COMPATIBILITY HEADERS
R: Emil Velikov <emil.l.velikov@gmail.com>
F: include/c99*
DRI LOADER
R: Emil Velikov <emil.l.velikov@gmail.com>
F: src/loader/
EGL
R: Eric Engestrom <eric@engestrom.ch>
R: Emil Velikov <emil.l.velikov@gmail.com>
F: src/egl/
F: include/EGL/
HAIKU
R: Alexander von Gluck IV <kallisti5@unixzen.com>
F: include/HaikuGL/
F: src/egl/drivers/haiku/
F: src/gallium/state_trackers/hgl/
F: src/gallium/targets/haiku-softpipe/
F: src/gallium/winsys/sw/hgl/
F: src/hgl/
GALLIUM LOADER
R: Emil Velikov <emil.l.velikov@gmail.com>
F: src/gallium/auxiliary/pipe-loader/
F: src/gallium/auxiliary/target-helpers/
GALLIUM TARGETS
R: Emil Velikov <emil.l.velikov@gmail.com>
F: src/gallium/targets/
SCONS BUILD
F: scons/
F: */SConscript*
F: */Makefile.sources
ANDROID BUILD
R: Emil Velikov <emil.l.velikov@gmail.com>
R: Rob Herring <robh@kernel.org>
F: CleanSpec.mk
F: */Android.*mk
F: */Makefile.sources
MESON BUILD
R: Dylan Baker <dylan@pnwbakers.com>
R: Eric Engestrom <eric@engestrom.ch>
F: */meson.build
F: meson.build
F: meson_options.txt
ANDROID EGL SUPPORT
R: Rob Herring <robh@kernel.org>
R: Tomasz Figa <tfiga@chromium.org>
F: src/egl/drivers/dri2/platform_android.c
WAYLAND EGL SUPPORT
R: Daniel Stone <daniels@collabora.com>
F: src/egl/wayland/*
F: src/egl/drivers/dri2/platform_wayland.c
FREEDRENO
R: Rob Clark <robclark@freedesktop.org>
F: src/gallium/drivers/freedreno/
GLX
R: Adam Jackson <ajax@redhat.com>
F: src/glx/
VULKAN
R: Eric Engestrom <eric@engestrom.ch>
F: src/vulkan/
F: include/vulkan/
VMWARE DRIVER
R: Brian Paul <brianp@vmware.com>
R: Charmaine Lee <charmainel@vmware.com>
F: src/gallium/drivers/svga/
VMWARE WINSYS CODE
R: Thomas Hellstrom <thellstrom@vmware.com>
R: Deepak Rawat <drawat@vmware.com>
F: src/gallium/winsys/svga/

View File

@@ -1,187 +0,0 @@
#######################################################################
# Top-level SConstruct
#
# For example, invoke scons as
#
# scons build=debug llvm=yes machine=x86
#
# to set configuration variables. Or you can write those options to a file
# named config.py:
#
# # config.py
# build='debug'
# llvm=True
# machine='x86'
#
# Invoke
#
# scons -h
#
# to get the full list of options. See scons manpage for more info.
#
from __future__ import print_function
import os
import os.path
import sys
import SCons.Util
import common
#######################################################################
# Minimal scons version
EnsureSConsVersion(2, 4)
EnsurePythonVersion(2, 7)
#######################################################################
# Configuration options
opts = Variables('config.py')
common.AddOptions(opts)
env = Environment(
options = opts,
tools = ['gallium'],
toolpath = ['#scons'],
ENV = os.environ,
)
# XXX: This creates a many problems as it saves...
#opts.Save('config.py', env)
# Backwards compatability with old target configuration variable
try:
targets = ARGUMENTS['targets']
except KeyError:
pass
else:
targets = targets.split(',')
print('scons: warning: targets option is deprecated; pass the targets on their own such as')
print()
print(' scons %s' % ' '.join(targets))
print()
COMMAND_LINE_TARGETS.append(targets)
Help(opts.GenerateHelpText(env))
#######################################################################
# Print a deprecation warning for using scons on non-windows
if common.host_platform != 'windows' and env['platform'] != 'windows':
if env['force_scons']:
print("WARNING: Scons is deprecated for non-windows platforms (including cygwin) "
"please use meson instead.", file=sys.stderr)
else:
print("ERROR: Scons is deprecated for non-windows platforms (including cygwin) "
"please use meson instead. If you really need to use scons you "
"can add `force_scons=1` to the scons command line.", file=sys.stderr)
sys.exit(1)
else:
print("WARNING: Scons support is in the process of being deprecated on "
"on windows platforms (including mingw). If you haven't already "
"please try using meson for windows builds. Be sure to report any "
"issues you run into", file=sys.stderr)
#######################################################################
# Environment setup
with open("VERSION") as f:
mesa_version = f.read().strip()
env.Append(CPPDEFINES = [
('PACKAGE_VERSION', '\\"%s\\"' % mesa_version),
('PACKAGE_BUGREPORT', '\\"https://gitlab.freedesktop.org/mesa/mesa/issues\\"'),
])
# Includes
env.Prepend(CPPPATH = [
'#/include',
])
env.Append(CPPPATH = [
'#/src/gallium/include',
'#/src/gallium/auxiliary',
'#/src/gallium/drivers',
'#/src/gallium/winsys',
])
# for debugging
#print env.Dump()
# Add a check target for running tests
check = env.Alias('check')
env.AlwaysBuild(check)
#######################################################################
# Invoke host SConscripts
#
# For things that are meant to be run on the native host build machine, instead
# of the target machine.
#
# Create host environent
if env['crosscompile'] and not env['embedded']:
host_env = Environment(
options = opts,
# no tool used
tools = [],
toolpath = ['#scons'],
ENV = os.environ,
)
# Override options
host_env['platform'] = common.host_platform
host_env['machine'] = common.host_machine
host_env['toolchain'] = 'default'
host_env['llvm'] = False
host_env.Tool('gallium')
host_env['hostonly'] = True
assert host_env['crosscompile'] == False
target_env = env
env = host_env
Export('env')
SConscript(
'src/SConscript',
variant_dir = host_env['build_dir'],
duplicate = 0, # http://www.scons.org/doc/0.97/HTML/scons-user/x2261.html
)
env = target_env
Export('env')
#######################################################################
# Invoke SConscripts
# TODO: Build several variants at the same time?
# http://www.scons.org/wiki/SimultaneousVariantBuilds
SConscript(
'src/SConscript',
variant_dir = env['build_dir'],
duplicate = 0 # http://www.scons.org/doc/0.97/HTML/scons-user/x2261.html
)
########################################################################
# List all aliases
try:
from SCons.Node.Alias import default_ans
except ImportError:
pass
else:
aliases = sorted(default_ans.keys())
env.Help('\n')
env.Help('Recognized targets:\n')
for alias in aliases:
env.Help(' %s\n' % alias)

View File

@@ -1 +0,0 @@
19.3.0

View File

@@ -1,73 +0,0 @@
# http://www.appveyor.com/docs/appveyor-yml
#
# To setup AppVeyor for your own personal repositories do the following:
# - Sign up
# - Add a new project
# - Select Git and fill in the Git clone URL
# - Setup a Git hook as explained in
# https://github.com/appveyor/webhooks#installing-git-hook
# - Check 'Settings > General > Skip branches without appveyor.yml'
# - Check 'Settings > General > Rolling builds'
# - Setup the global or project notifications to your liking
#
# Note that kicking (or restarting) a build via the web UI will not work, as it
# will fail to find appveyor.yml . The Git hook is the most practical way to
# kick a build.
#
# See also:
# - http://help.appveyor.com/discussions/problems/2209-node-grunt-build-specify-a-project-or-solution-file-the-directory-does-not-contain-a-project-or-solution-file
# - http://help.appveyor.com/discussions/questions/1184-build-config-vs-appveyoryaml
version: '{build}'
branches:
except:
- /^travis.*$/
# Don't download the full Mesa history to speed up cloning. However the clone
# depth must not be too small, otherwise builds might fail when lots of patches
# are committed in succession, because the desired commit is not found on the
# truncated history.
#
# See also:
# - https://www.appveyor.com/blog/2014/06/04/shallow-clone-for-git-repositories
clone_depth: 100
# https://www.appveyor.com/docs/build-cache/
cache:
- '%LOCALAPPDATA%\pip\Cache -> appveyor.yml'
- win_flex_bison-2.5.15.zip
- llvm-5.0.1-msvc2017-mtd.7z
- subprojects\packagecache -> subprojects\*.wrap
os: Visual Studio 2017
init:
# Appveyor defaults core.autocrlf to input instead of the default (true), but
# that can hide problems processing CRLF text on Windows
- git config --global core.autocrlf true
environment:
WINFLEXBISON_VERSION: 2.5.15
LLVM_ARCHIVE: llvm-5.0.1-msvc2017-mtd.7z
matrix:
- compiler: msvc
buildsystem: scons
- compiler: msvc
buildsystem: meson
path: C:\Python37-x64;C:\Python37-x64\Scripts;%path%
install:
- cmd: .appveyor\appveyor_msvc.bat install
build_script:
- cmd: .appveyor\appveyor_msvc.bat build_script
test_script:
- cmd: .appveyor\appveyor_msvc.bat test_script
# It's possible to setup notification here, as described in
# http://www.appveyor.com/docs/notifications#appveyor-yml-configuration , but
# doing so would cause the notification settings to be replicated across all
# repos, which is most likely undesired. So it's better to rely on the
# Appveyor global/project notification settings.

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@@ -1,7 +0,0 @@
# This is reverted shortly after landing
4432a2d14d80081d062f7939a950d65ea3a16eed
# These were manually backported
21be5c8edd3ad156f6cbfbceb96e7939716d9f2c
4b392ced2d744fccffe95490ff57e6b41033c266
b6905438514ae4de0b7f85c861e3d811ddaadda9

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@@ -1,2 +0,0 @@
[*.sh]
indent_style = tab

View File

View File

@@ -1,272 +0,0 @@
#!/usr/bin/env python3
# Copyright © 2019 Intel Corporation
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
"""Generates release notes for a given version of mesa."""
import asyncio
import datetime
import os
import pathlib
import sys
import textwrap
import typing
import urllib.parse
import aiohttp
from mako.template import Template
from mako import exceptions
CURRENT_GL_VERSION = '4.6'
CURRENT_VK_VERSION = '1.1'
TEMPLATE = Template(textwrap.dedent("""\
<%!
import html
%>
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.01 Transitional//EN" "http://www.w3.org/TR/html4/loose.dtd">
<html lang="en">
<head>
<meta http-equiv="content-type" content="text/html; charset=utf-8">
<title>Mesa Release Notes</title>
<link rel="stylesheet" type="text/css" href="../mesa.css">
</head>
<body>
<div class="header">
<h1>The Mesa 3D Graphics Library</h1>
</div>
<iframe src="../contents.html"></iframe>
<div class="content">
<h1>Mesa ${next_version} Release Notes / ${today}</h1>
<p>
%if not bugfix:
Mesa ${next_version} is a new development release. People who are concerned
with stability and reliability should stick with a previous release or
wait for Mesa ${version[:-1]}1.
%else:
Mesa ${next_version} is a bug fix release which fixes bugs found since the ${version} release.
%endif
</p>
<p>
Mesa ${next_version} implements the OpenGL ${gl_version} API, but the version reported by
glGetString(GL_VERSION) or glGetIntegerv(GL_MAJOR_VERSION) /
glGetIntegerv(GL_MINOR_VERSION) depends on the particular driver being used.
Some drivers don't support all the features required in OpenGL ${gl_version}. OpenGL
${gl_version} is <strong>only</strong> available if requested at context creation.
Compatibility contexts may report a lower version depending on each driver.
</p>
<p>
Mesa ${next_version} implements the Vulkan ${vk_version} API, but the version reported by
the apiVersion property of the VkPhysicalDeviceProperties struct
depends on the particular driver being used.
</p>
<h2>SHA256 checksum</h2>
<pre>
TBD.
</pre>
<h2>New features</h2>
<ul>
%for f in features:
<li>${html.escape(f)}</li>
%endfor
</ul>
<h2>Bug fixes</h2>
<ul>
%for b in bugs:
<li>${html.escape(b)}</li>
%endfor
</ul>
<h2>Changes</h2>
<ul>
%for c, author in changes:
%if author:
<p>${html.escape(c)}</p>
%else:
<li>${html.escape(c)}</li>
%endif
%endfor
</ul>
</div>
</body>
</html>
"""))
async def gather_commits(version: str) -> str:
p = await asyncio.create_subprocess_exec(
'git', 'log', f'mesa-{version}..', '--grep', r'Closes: \(https\|#\).*',
stdout=asyncio.subprocess.PIPE)
out, _ = await p.communicate()
assert p.returncode == 0, f"git log didn't work: {version}"
return out.decode().strip()
async def gather_bugs(version: str) -> typing.List[str]:
commits = await gather_commits(version)
issues: typing.List[str] = []
for commit in commits.split('\n'):
sha, message = commit.split(maxsplit=1)
p = await asyncio.create_subprocess_exec(
'git', 'log', '--max-count', '1', r'--format=%b', sha,
stdout=asyncio.subprocess.PIPE)
_out, _ = await p.communicate()
out = _out.decode().split('\n')
for line in reversed(out):
if line.startswith('Closes:'):
bug = line.lstrip('Closes:').strip()
break
else:
raise Exception('No closes found?')
if bug.startswith('h'):
# This means we have a bug in the form "Closes: https://..."
issues.append(os.path.basename(urllib.parse.urlparse(bug).path))
else:
issues.append(bug.lstrip('#'))
loop = asyncio.get_event_loop()
async with aiohttp.ClientSession(loop=loop) as session:
results = await asyncio.gather(*[get_bug(session, i) for i in issues])
typing.cast(typing.Tuple[str, ...], results)
return list(results)
async def get_bug(session: aiohttp.ClientSession, bug_id: str) -> str:
"""Query gitlab to get the name of the issue that was closed."""
# Mesa's gitlab id is 176,
url = 'https://gitlab.freedesktop.org/api/v4/projects/176/issues'
params = {'iids[]': bug_id}
async with session.get(url, params=params) as response:
content = await response.json()
return content[0]['title']
async def get_shortlog(version: str) -> str:
"""Call git shortlog."""
p = await asyncio.create_subprocess_exec('git', 'shortlog', f'mesa-{version}..',
stdout=asyncio.subprocess.PIPE)
out, _ = await p.communicate()
assert p.returncode == 0, 'error getting shortlog'
assert out is not None, 'just for mypy'
return out.decode()
def walk_shortlog(log: str) -> typing.Generator[typing.Tuple[str, bool], None, None]:
for l in log.split('\n'):
if l.startswith(' '): # this means we have a patch description
yield l, False
else:
yield l, True
def calculate_next_version(version: str, is_point: bool) -> str:
"""Calculate the version about to be released."""
if '-' in version:
version = version.split('-')[0]
if is_point:
base = version.split('.')
base[2] = str(int(base[2]) + 1)
return '.'.join(base)
return version
def calculate_previous_version(version: str, is_point: bool) -> str:
"""Calculate the previous version to compare to.
In the case of -rc to final that verison is the previous .0 release,
(19.3.0 in the case of 20.0.0, for example). for point releases that is
the last point release. This value will be the same as the input value
for a point release, but different for a major release.
"""
if '-' in version:
version = version.split('-')[0]
if is_point:
return version
base = version.split('.')
if base[1] == '0':
base[0] = str(int(base[0]) - 1)
base[1] = '3'
else:
base[1] = str(int(base[1]) - 1)
return '.'.join(base)
def get_features(is_point_release: bool) -> typing.Generator[str, None, None]:
p = pathlib.Path(__file__).parent.parent / 'docs' / 'relnotes' / 'new_features.txt'
if p.exists():
if is_point_release:
print("WARNING: new features being introduced in a point release", file=sys.stderr)
with p.open('rt') as f:
for line in f:
yield line
else:
yield "None"
async def main() -> None:
v = pathlib.Path(__file__).parent.parent / 'VERSION'
with v.open('rt') as f:
raw_version = f.read().strip()
is_point_release = '-rc' not in raw_version
assert '-devel' not in raw_version, 'Do not run this script on -devel'
version = raw_version.split('-')[0]
previous_version = calculate_previous_version(version, is_point_release)
next_version = calculate_next_version(version, is_point_release)
shortlog, bugs = await asyncio.gather(
get_shortlog(previous_version),
gather_bugs(previous_version),
)
final = pathlib.Path(__file__).parent.parent / 'docs' / 'relnotes' / f'{next_version}.html'
with final.open('wt') as f:
try:
f.write(TEMPLATE.render(
bugfix=is_point_release,
bugs=bugs,
changes=walk_shortlog(shortlog),
features=get_features(is_point_release),
gl_version=CURRENT_GL_VERSION,
next_version=next_version,
today=datetime.date.today(),
version=previous_version,
vk_version=CURRENT_VK_VERSION,
))
except:
print(exceptions.text_error_template().render())
if __name__ == "__main__":
loop = asyncio.get_event_loop()
loop.run_until_complete(main())

View File

@@ -1,62 +0,0 @@
# Copyright © 2019 Intel Corporation
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
from unittest import mock
import pytest
from .gen_release_notes import *
@pytest.mark.parametrize(
'current, is_point, expected',
[
('19.2.0', True, '19.2.1'),
('19.3.6', True, '19.3.7'),
('20.0.0-rc4', False, '20.0.0'),
])
def test_next_version(current: str, is_point: bool, expected: str) -> None:
assert calculate_next_version(current, is_point) == expected
@pytest.mark.parametrize(
'current, is_point, expected',
[
('19.3.6', True, '19.3.6'),
('20.0.0-rc4', False, '19.3.0'),
])
def test_previous_version(current: str, is_point: bool, expected: str) -> None:
assert calculate_previous_version(current, is_point) == expected
@pytest.mark.asyncio
async def test_get_shortlog():
# Certainly not perfect, but it's something
version = '19.2.0'
out = await get_shortlog(version)
assert out
@pytest.mark.asyncio
async def test_gather_commits():
# Certainly not perfect, but it's something
version = '19.2.0'
out = await gather_commits(version)
assert out

View File

@@ -1,45 +0,0 @@
#!/bin/sh
# Script for generating a list of candidates which fix commits that have been
# previously cherry-picked to a stable branch.
#
# Usage examples:
#
# $ bin/get-extra-pick-list.sh
# $ bin/get-extra-pick-list.sh > picklist
# $ bin/get-extra-pick-list.sh | tee picklist
# Use the last branchpoint as our limit for the search
latest_branchpoint=`git merge-base origin/master HEAD`
# Grep for commits with "cherry picked from commit" in the commit message.
git log --reverse --grep="cherry picked from commit" $latest_branchpoint..HEAD |\
grep "cherry picked from commit" |\
sed -e 's/^[[:space:]]*(cherry picked from commit[[:space:]]*//' -e 's/)//' > already_picked
# For each cherry-picked commit...
cat already_picked | cut -c -8 |\
while read sha
do
# ... check if it's referenced (fixed by another) patch
git log -n1 --pretty=oneline --grep=$sha $latest_branchpoint..origin/master |\
cut -c -8 |\
while read candidate
do
# And flag up if it hasn't landed in branch yet.
if grep -q ^$candidate already_picked ; then
continue
fi
# Or if it isn't in the ignore list.
if [ -f bin/.cherry-ignore ] ; then
if grep -q ^$candidate bin/.cherry-ignore ; then
continue
fi
fi
printf "Commit \"%s\" references %s\n" \
"`git log -n1 --pretty=oneline $candidate`" \
"$sha"
done
done
rm -f already_picked

View File

@@ -1,150 +0,0 @@
#!/bin/sh
# Script for generating a list of candidates for cherry-picking to a stable branch
#
# Usage examples:
#
# $ bin/get-pick-list.sh
# $ bin/get-pick-list.sh > picklist
# $ bin/get-pick-list.sh | tee picklist
#
# The output is as follows:
# [nomination_type] commit_sha commit summary
is_stable_nomination()
{
git show --pretty=medium --summary "$1" | grep -q -i -o "CC:.*mesa-stable"
}
is_typod_nomination()
{
git show --pretty=medium --summary "$1" | grep -q -i -o "CC:.*mesa-dev"
}
fixes=
# Helper to handle various mistypos of the fixes tag.
# The tag string itself is passed as argument and normalised within.
#
# Resulting string in the global variable "fixes" and contains entries
# in the form "fixes:$sha"
is_sha_nomination()
{
fixes=`git show --pretty=medium -s $1 | tr -d "\n" | \
sed -e 's/'"$2"'/\nfixes:/Ig' | \
grep -Eo 'fixes:[a-f0-9]{4,40}'`
fixes_count=`echo "$fixes" | grep "fixes:" | wc -l`
if test $fixes_count -eq 0; then
return 1
fi
# Throw a warning for each invalid sha
while test $fixes_count -gt 0; do
# Treat only the current line
id=`echo "$fixes" | tail -n $fixes_count | head -n 1 | cut -d : -f 2`
fixes_count=$(($fixes_count-1))
if ! git show $id >/dev/null 2>&1; then
echo WARNING: Commit $1 lists invalid sha $id
fi
done
return 0
}
# Checks if at least one of offending commits, listed in the global
# "fixes", is in branch.
sha_in_range()
{
fixes_count=`echo "$fixes" | grep "fixes:" | wc -l`
while test $fixes_count -gt 0; do
# Treat only the current line
id=`echo "$fixes" | tail -n $fixes_count | head -n 1 | cut -d : -f 2`
fixes_count=$(($fixes_count-1))
# Be that cherry-picked ...
# ... or landed before the branchpoint.
if grep -q ^$id already_picked ||
grep -q ^$id already_landed ; then
return 0
fi
done
return 1
}
is_fixes_nomination()
{
is_sha_nomination "$1" "fixes:[[:space:]]*"
if test $? -eq 0; then
return 0
fi
is_sha_nomination "$1" "fixes[[:space:]]\+"
}
is_brokenby_nomination()
{
is_sha_nomination "$1" "broken by"
}
is_revert_nomination()
{
is_sha_nomination "$1" "This reverts commit "
}
# Use the last branchpoint as our limit for the search
latest_branchpoint=`git merge-base upstream/master HEAD`
# List all the commits between day 1 and the branch point...
git log --reverse --pretty=%H $latest_branchpoint > already_landed
# ... and the ones cherry-picked.
git log --reverse --pretty=medium --grep="cherry picked from commit" $latest_branchpoint..HEAD |\
grep "cherry picked from commit" |\
sed -e 's/^[[:space:]]*(cherry picked from commit[[:space:]]*//' -e 's/)//' > already_picked
# Grep for potential candidates
git log --reverse --pretty=%H -i --grep='^CC:.*mesa-stable\|^CC:.*mesa-dev\|\<fixes\>\|\<broken by\>\|This reverts commit' $latest_branchpoint..upstream/master |\
while read sha
do
# Check to see whether the patch is on the ignore list.
if test -f bin/.cherry-ignore; then
if grep -q ^$sha bin/.cherry-ignore ; then
continue
fi
fi
# Check to see if it has already been picked over.
if grep -q ^$sha already_picked ; then
continue
fi
if is_fixes_nomination "$sha"; then
tag=fixes
elif is_brokenby_nomination "$sha"; then
tag=brokenby
elif is_revert_nomination "$sha"; then
tag=revert
elif is_stable_nomination "$sha"; then
tag=stable
elif is_typod_nomination "$sha"; then
tag=typod
else
continue
fi
case "$tag" in
fixes | brokenby | revert )
if ! sha_in_range; then
continue
fi
;;
* )
;;
esac
printf "[ %8s ] " "$tag"
git --no-pager show --no-patch --pretty=oneline $sha
done
rm -f already_picked
rm -f already_landed

View File

@@ -1,50 +0,0 @@
"""
Generate the contents of the git_sha1.h file.
The output of this script goes to stdout.
"""
import argparse
import os
import os.path
import subprocess
import sys
def get_git_sha1():
"""Try to get the git SHA1 with git rev-parse."""
git_dir = os.path.join(os.path.dirname(sys.argv[0]), '..', '.git')
try:
git_sha1 = subprocess.check_output([
'git',
'--git-dir=' + git_dir,
'rev-parse',
'HEAD',
], stderr=open(os.devnull, 'w')).decode("ascii")
except:
# don't print anything if it fails
git_sha1 = ''
return git_sha1
def write_if_different(contents):
"""
Avoid touching the output file if it doesn't need modifications
Useful to avoid triggering rebuilds when nothing has changed.
"""
if os.path.isfile(args.output):
with open(args.output, 'r') as file:
if file.read() == contents:
return
with open(args.output, 'w') as file:
file.write(contents)
parser = argparse.ArgumentParser()
parser.add_argument('--output', help='File to write the #define in',
required=True)
args = parser.parse_args()
git_sha1 = os.environ.get('MESA_GIT_SHA1_OVERRIDE', get_git_sha1())[:10]
if git_sha1:
write_if_different('#define MESA_GIT_SHA1 " (git-' + git_sha1 + ')"')
else:
write_if_different('#define MESA_GIT_SHA1 ""')

View File

@@ -1,83 +0,0 @@
# encoding=utf-8
# Copyright © 2017-2018 Intel Corporation
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
"""Script to install megadriver symlinks for meson."""
from __future__ import print_function
import argparse
import os
def main():
parser = argparse.ArgumentParser()
parser.add_argument('megadriver')
parser.add_argument('libdir')
parser.add_argument('drivers', nargs='+')
args = parser.parse_args()
if os.path.isabs(args.libdir):
destdir = os.environ.get('DESTDIR')
if destdir:
to = os.path.join(destdir, args.libdir[1:])
else:
to = args.libdir
else:
to = os.path.join(os.environ['MESON_INSTALL_DESTDIR_PREFIX'], args.libdir)
master = os.path.join(to, os.path.basename(args.megadriver))
if not os.path.exists(to):
if os.path.lexists(to):
os.unlink(to)
os.makedirs(to)
for driver in args.drivers:
abs_driver = os.path.join(to, driver)
if os.path.lexists(abs_driver):
os.unlink(abs_driver)
print('installing {} to {}'.format(args.megadriver, abs_driver))
os.link(master, abs_driver)
try:
ret = os.getcwd()
os.chdir(to)
name, ext = os.path.splitext(driver)
while ext != '.so':
if os.path.lexists(name):
os.unlink(name)
os.symlink(driver, name)
name, ext = os.path.splitext(name)
finally:
os.chdir(ret)
# Remove meson-created master .so and symlinks
os.unlink(master)
name, ext = os.path.splitext(master)
while ext != '.so':
if os.path.lexists(name):
os.unlink(name)
name, ext = os.path.splitext(name)
if __name__ == '__main__':
main()

View File

@@ -1,88 +0,0 @@
#!/usr/bin/env python3
# Copyright © 2019 Intel Corporation
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
"""This script reads a meson build directory and gives back the command line it
was configured with.
This only works for meson 0.49.0 and newer.
"""
import argparse
import ast
import configparser
import pathlib
import sys
def parse_args() -> argparse.Namespace:
"""Parse arguments."""
parser = argparse.ArgumentParser()
parser.add_argument(
'build_dir',
help='Path the meson build directory')
args = parser.parse_args()
return args
def load_config(path: pathlib.Path) -> configparser.ConfigParser:
"""Load config file."""
conf = configparser.ConfigParser()
with path.open() as f:
conf.read_file(f)
return conf
def build_cmd(conf: configparser.ConfigParser) -> str:
"""Rebuild the command line."""
args = []
for k, v in conf['options'].items():
if ' ' in v:
args.append(f'-D{k}="{v}"')
else:
args.append(f'-D{k}={v}')
cf = conf['properties'].get('cross_file')
if cf:
args.append('--cross-file={}'.format(cf))
nf = conf['properties'].get('native_file')
if nf:
# this will be in the form "['str', 'str']", so use ast.literal_eval to
# convert it to a list of strings.
nf = ast.literal_eval(nf)
args.extend(['--native-file={}'.format(f) for f in nf])
return ' '.join(args)
def main():
args = parse_args()
path = pathlib.Path(args.build_dir, 'meson-private', 'cmd_line.txt')
if not path.exists():
print('Cannot find the necessary file to rebuild command line. '
'Is your meson version >= 0.49.0?', file=sys.stderr)
sys.exit(1)
conf = load_config(path)
cmd = build_cmd(conf)
print(cmd)
if __name__ == '__main__':
main()

View File

@@ -1,63 +0,0 @@
#!/usr/bin/env python3
from os import get_terminal_size
from textwrap import wrap
from mesonbuild import coredata
from mesonbuild import optinterpreter
(COLUMNS, _) = get_terminal_size()
def describe_option(option_name: str, option_default_value: str,
option_type: str, option_message: str) -> None:
print('name: ' + option_name)
print('default: ' + option_default_value)
print('type: ' + option_type)
for line in wrap(option_message, width=COLUMNS - 9):
print(' ' + line)
print('---')
oi = optinterpreter.OptionInterpreter('')
oi.process('meson_options.txt')
for (name, value) in oi.options.items():
if isinstance(value, coredata.UserStringOption):
describe_option(name,
value.value,
'string',
"You can type what you want, but make sure it makes sense")
elif isinstance(value, coredata.UserBooleanOption):
describe_option(name,
'true' if value.value else 'false',
'boolean',
"You can set it to 'true' or 'false'")
elif isinstance(value, coredata.UserIntegerOption):
describe_option(name,
str(value.value),
'integer',
"You can set it to any integer value between '{}' and '{}'".format(value.min_value, value.max_value))
elif isinstance(value, coredata.UserUmaskOption):
describe_option(name,
str(value.value),
'umask',
"You can set it to 'preserve' or a value between '0000' and '0777'")
elif isinstance(value, coredata.UserComboOption):
choices = '[' + ', '.join(["'" + v + "'" for v in value.choices]) + ']'
describe_option(name,
value.value,
'combo',
"You can set it to any one of those values: " + choices)
elif isinstance(value, coredata.UserArrayOption):
choices = '[' + ', '.join(["'" + v + "'" for v in value.choices]) + ']'
value = '[' + ', '.join(["'" + v + "'" for v in value.value]) + ']'
describe_option(name,
value,
'array',
"You can set it to one or more of those values: " + choices)
elif isinstance(value, coredata.UserFeatureOption):
describe_option(name,
value.value,
'feature',
"You can set it to 'auto', 'enabled', or 'disabled'")
else:
print(name + ' is an option of a type unknown to this script')
print('---')

View File

@@ -1,22 +0,0 @@
# Copyright © 2017 Eric Engestrom
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
git_sha1_gen_py = files('git_sha1_gen.py')
symbols_check = find_program('symbols-check.py')

View File

@@ -1,35 +0,0 @@
#!/usr/bin/env python
# encoding=utf-8
# Copyright © 2017 Intel Corporation
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
from __future__ import print_function
import os
def main():
filename = os.path.join(os.environ['MESON_SOURCE_ROOT'], 'VERSION')
with open(filename) as f:
version = f.read().strip()
print(version, end='')
if __name__ == '__main__':
main()

351
bin/mklib Executable file
View File

@@ -0,0 +1,351 @@
#!/bin/sh
# Make a shared library.
# Basically do a switch/case depending on the OS and make a shared
# lib conforming to that OS.
# Usage:
# mklib [options] objects ...
# Options:
# -o LIBRARY specifies the name of resulting library ("GL" for example)
# -major N specifies major version number (default is 1)
# -minor N specifies minor version number (default is 0)
# -patch N specifies patch version number (default is 0)
# -lLIBRARY specifies a dependency on LIBRARY
# -LDIR search in DIR for library dependencies
# -cplusplus link with C++ runtime
# -static make a static library (default is dynamic/shared)
# -install DIR move resulting library files to DIR
# -arch ARCH override using `uname` to determine architecture
# -archopt OPT specify an extra achitecture-specific option OPT
#
# The library name should just be "GL" or "GLU", etc. The 'lib' prefix
# will be added here if needed, as well as the ".so" or ".a" suffix, etc.
#
# objects should be: foo.o bar.o etc.o
#
# Environment variables recognized:
# CC C compiler command
# CXX C++ compiler command
#
#
# Option defaults
#
LIBNAME=""
MAJOR=1
MINOR=0
PATCH=0
DEPS=""
CPLUSPLUS=0
STATIC=0
INSTALLDIR="."
ARCH="auto"
ARCHOPT=""
#
# Parse arguments
#
while true
do
case $1 in
'-o') shift 1; LIBNAME=$1;;
'-major') shift 1; MAJOR=$1;;
'-minor') shift 1; MINOR=$1;;
'-patch') shift 1; PATCH=$1;;
-l*) DEPS="$DEPS $1";;
-L*) DEPS="$DEPS $1";;
'-cplusplus') CPLUSPLUS=1;;
'-static') STATIC=1;;
'-install') shift 1; INSTALLDIR=$1;;
'-arch') shift 1; ARCH=$1;;
'-archopt') shift 1; ARCHOPT=$1;;
-*) echo "mklib: Unknown option: " $1 ; exit 1;;
*) break
esac
shift 1
done
OBJECTS=$@
if [ ${ARCH} = "auto" ] ; then
ARCH=`uname`
fi
#
# Error checking
#
if [ "x${LIBNAME}" = "x" ] ; then
echo "mklib: Error: no library name specified"
exit 1
fi
if [ "x${OBJECTS}" = "x" ] ; then
echo "mklib: Error: no object files specified"
exit 1
fi
#
# Debugging info
#
if [ ] ; then
echo "-----------------"
echo ARCH is $ARCH
echo LIBNAME is $LIBNAME
echo MAJOR is $MAJOR
echo MINOR is $MINOR
echo PATCH is $PATCH
echo DEPS are $DEPS
echo "-----------------"
fi
#
# OK, make the library now
#
case $ARCH in
'Linux')
LIBNAME="lib${LIBNAME}" # prefix with "lib"
if [ $STATIC = 1 ] ; then
echo "mklib: Making Linux static library: " ${LIBNAME}.a
LINK="ar"
OPTS="-ruv"
# make lib
${LINK} ${OPTS} ${LIBNAME}.a ${OBJECTS}
# finish up
FINAL_LIBS="${LIBNAME}.a"
else
OPTS="-Xlinker -Bsymbolic -shared -Wl,-soname,${LIBNAME}.so.${MAJOR}"
VERSION="${MAJOR}.${MINOR}.${PATCH}"
echo "mklib: Making Linux shared library: " ${LIBNAME}.so.${VERSION}
if [ $CPLUSPLUS = 1 ] ; then
LINK="g++"
else
LINK="gcc"
fi
# rm any old libs
rm -f ${LIBNAME}.so.${VERSION}
rm -f ${LIBNAME}.so.${MAJOR}
rm -f ${LIBNAME}.so
# make lib
${LINK} ${OPTS} -o ${LIBNAME}.so.${VERSION} ${OBJECTS} ${DEPS}
# make usual symlinks
ln -s ${LIBNAME}.so.${VERSION} ${LIBNAME}.so.${MAJOR}
ln -s ${LIBNAME}.so.${MAJOR} ${LIBNAME}.so
# finish up
FINAL_LIBS="${LIBNAME}.so.${VERSION} ${LIBNAME}.so.${MAJOR} ${LIBNAME}.so"
fi
;;
'SunOS')
LIBNAME="lib${LIBNAME}.so"
echo "mklib: Making SunOS shared library: " ${LIBNAME}
OPTS="-G"
if [ $CPLUSPLUS = 1 ] ; then
# link for C++
if [ "x${CXX}" = "xg++" ] ; then
LINK="g++"
elif [ "x${CXX}" = "xCC" ] ; then
LINK="CC"
elif [ `which c++` ] ; then
LINK="c++"
elif [ `type g++` ] ; then
LINK="g++"
else
echo "mklib: warning: can't find C++ comiler, trying CC."
LINK="CC"
fi
elif [ "x${CC}" = "xgcc" ] ; then
# use gcc for linking
LINK="gcc"
else
# use native Sun linker
LINK="ld"
fi
echo "mklib: linker is " ${LINK}
rm -f ${LIBNAME}
${LINK} ${OPTS} -o ${LIBNAME} ${OBJECTS} ${DEPS}
FINAL_LIBS=${LIBNAME}
;;
'FreeBSD')
SHLIB="lib${LIBNAME}.so.${MAJOR}.${MINOR}"
STLIB="lib${LIBNAME}.a"
echo "mklib: Making FreeBSD shared library: " ${SHLIB}
rm -f ${SHLIB} ${STLIB}
ar cq ${STLIB} ${OBJECTS}
ranlib ${STLIB}
ld -Bshareable -o ${SHLIB} ${OBJECTS}
# XXX make lib${LIBNAME}.so.${MAJOR} symlink?
FINAL_LIBS="${SHLIB} ${STLIB}"
;;
'OpenBSD')
LIBNAME="lib${LIBNAME}"
VERSION="${MAJOR}.${MINOR}"
echo "Building OpenBSD PIC library: " ${LIBNAME}
rm -f ${LIBNAME}_pic.a ${LIBNAME}.so.${VERSION}
ar cq ${LIBNAME}_pic.a ${OBJECTS}
ranlib ${LIBNAME}_pic.a
ld -x -Bshareable -Bforcearchive -o ${LIBNAME}.so.${VERSION} ${LIBNAME}_pic.a
ln -s ${LIBNAME}.so.${VERSION} ${LIBNAME}.so
FINAL_LIBS="${LIBNAME}_pic.a ${LIBNAME}.so.${VERSION} ${LIBNAME}.so"
;;
'NetBSD')
LIBNAME="lib${LIBNAME}"
echo "mklib: Making NetBSD PIC shared library: " ${LIBNAME}
VERSION="${MAJOR}.${MINOR}"
rm -f ${LIBNAME}_pic.a ${LIBNAME}.so.${VERSION}
ar cq ${LIBNAME}_pic.a ${OBJECTS}
ranlib ${LIBNAME}_pic.a
ld -x -Bshareable -Bforcearchive -o ${LIBNAME}.so.${VERSION} ${LIBNAME}_pic.a
FINAL_LIBS="${LIBNAME}_pic.a ${LIBNAME}.so.${VERSION}"
;;
'IRIX')
LIBNAME="lib${LIBNAME}.so" # prefix with "lib", suffix with ".so"
if [ $ARCHOPTS = "64" ] ; then
# 64-bit ABI
OPTS="-64 -shared -all"
echo "mklib: Making IRIX 64-bit shared library: " ${LIBNAME}
elif [ $ARCHOPTS = "o32" ] ; then
# old 32-bit ABI
OPTS="-32 -shared -all"
echo "mklib: Making IRIX o32-bit shared library: " ${LIBNAME}
else
# new 32-bit ABI
OPTS="-n32 -shared -all"
echo "mklib: Making IRIX n32-bit shared library: " ${LIBNAME}
fi
ld ${OPTS} -o ${LIBNAME} ${OBJECTS} ${DEPS}
FINAL_LIBS="${LIBNAME}"
;;
'IRIX64')
LIBNAME="lib${LIBNAME}.so" # prefix with "lib", suffix with ".so"
echo "mklib: Making IRIX64 library: " ${LIBNAME}
# 64-bit ABI
OPTS="-64 -shared -all"
ld ${OPTS} -o ${LIBNAME} ${OBJECTS} ${DEPS}
FINAL_LIBS="${LIBNAME}"
;;
'linux-cygwin')
LIBNAME="lib${LIBNAME}.a"
echo "mklib: Making linux-cygwin library: " ${LIBNAME}
gnuwin32ar ruv ${LIBNAME} ${OBJECTS}
FINAL_LIBS=${LIBNAME}
;;
'HPUX')
RUNLIB="lib${LIBNAME}.${MAJOR}"
DEVLIB="lib${LIBNAME}.sl"
echo "mklib: Making HPUX library: " ${RUNLIB} ${DEVLIB}
ld -b -o ${RUNLIB} +b ${RUNLIB} ${OBJECTS} ${DEPS}
ln -s ${RUNLIB} ${DEVLIB}
FINAL_LIBS="{RUNLIB} ${DEVLIB}"
;;
'OpenSTEP')
LIBNAME="lib${LIBNAME}.a"
echo "mklib: Making OpenSTEP static library: " ${LIBNAME}
libtool -static -o ${LIBNAME} - ${OBJECTS}
FINAL_LIBS=${LIBNAME}
;;
'OSF1')
VERSION="${MAJOR}.${MINOR}"
LIBNAME="lib${LIBNAME}.so"
ARNAME="lib${LIBNAME}.a"
echo "mklib: Making OSF/1 library: " ${LIBNAME}
rm -f ${LIBNAME}.${VERSION}
ld -o ${LIBNAME}.${VERSION} -shared -no_archive -set_version ${VERSION} -soname ${LIBNAME}.${VERSION} -expect_unresolved \* -all ${OBJECTS} ${DEPS}
ln -sf ${LIBNAME}.${VERSION} ${LIBNAME}
# also make static lib
rm -f ${ARNAME}
ar clqz ${ARNAME} ${OBJECTS}
FINAL_LIBS="${ARNAME} ${LIBNAME} ${LIBNAME}.${VERSION}"
;;
'Darwin')
VERSION="${MAJOR}.${MINOR}.${TINY}"
LIBNAME="lib${LIBNAME}.dylib"
ARNAME="lib${LIBNAME}.dylib.a"
echo "mklib: Making Darwin libraries: " ${LIBNAME} ${ARNAME}
FLAGS="-dynamiclib -multiply_defined suppress"
cc ${FLAGS} -o ${LIBNAME} ${OBJECTS} ${DEPS}
# also make regular .a files,
# provided by Danek Duvall (duvall@dhduvall.student.princeton.edu)
ar ruv ${ARNAME} ${OBJECTS}
ranlib ${ARNAME}
FINAL_LIBS="${ARNAME} ${LIBNAME}"
;;
'LynxOS')
LIBNAME="lib${LIBNAME}.a"
echo "mklib: Making LynxOS library: " ${LIBNAME}
ar ru ${LIBNAME} ${OBJECTS}
FINAL_LIBS=${LIBNAME}
;;
'BeOS')
LIBNAME="lib${LIBNAME}.so"
echo "mklib: Making BeOS shared library: " ${LIBNAME}
gcc -nostart -Xlinker -soname=${LIBNAME} -L/Be/develop/lib/x86 ${OBJECTS} -lbe -o ${LIBNAME}
FINAL_LIBS=${LIBNAME}
;;
'QNX')
LIBNAME="lib${LIBNAME}.a"
echo "mklib: Making QNX library: " ${LIBNAME}
wlib ${LIBNAME} ${OBJECTS}
FINAL_LIBS=${LIBNAME}
;;
'MorphOS')
LIBNAME="lib${LIBNAME}.a"
echo "mklib: Making MorphOS library: " ${LIBNAME}
ppc-morphos-ar rc ${LIBNAME} ${OBJECTS}
FINAL_LIBS="${LIBNAME}"
;;
'example')
# If you're adding support for a new architecture, you can
# start with this:
LIBNAME="lib${LIBNAME}.so" # prefix with "lib"
echo "mklib: Making library for example arch: " ${LIBNAME}
ld -o ${LIBNAME} ${OBJECTS} ${DEPS}
FINAL_LIBS="${LIBNAME}"
;;
*)
echo "mklib: WARNING: making library for unknown platform!"
echo "mklib: WARNING: this may not work!"
echo "mklib: WARNING: please update the bin/mklib script!"
# XXX this is a total hack for Mesa - remove someday
# fall-back to an old mklib.* script
LIBNAME="lib${LIBNAME}.a"
${TOP}/${MAKELIB} "lib${LIBNAME}.a" ${MAJOR} ${MINOR} ${PATCH} ${OBJECTS}
FINAL_LIBS="${LIBNAME}"
;;
esac
#
# Put library files into installation directory if specified.
#
if [ ${INSTALLDIR} != "." ] ; then
echo "mklib: Installing" ${FINAL_LIBS} "in" ${INSTALLDIR}
mv ${FINAL_LIBS} ${INSTALLDIR}/
fi

153
bin/mklib.aix Executable file
View File

@@ -0,0 +1,153 @@
#!/bin/ksh
# Make an AIX shared library (tricky!!!)
# Based on a script from Athanasios G. Gaitatzes (gaitat@vnet.ibm.com)
# Improved by Greg Thompson <gregt@visix.com> -gt
#--identification------------------------------------------------------
# $Id: mklib.aix,v 1.2 1999/09/15 15:10:20 brianp Exp $
# $Log: mklib.aix,v $
# Revision 1.2 1999/09/15 15:10:20 brianp
# added third, tiny version number to arguments
#
# Revision 1.1 1999/08/19 13:52:56 brianp
# initial check-in (post-crash)
#
#--common--------------------------------------------------------------
LIBRARY=$1
shift 1
MAJOR=$1
shift 1
MINOR=$1
shift 1
TINY=$1
shift 1
OBJECTS=$*
#--platform------------------------------------------------------------
# BASENAME = LIBRARY without .a suffix
BASENAME=`echo ${LIBRARY} | sed "s/\.a//g"`
# Name of exports file
EXPFILE=${BASENAME}.exp
# Name of temporary shared lib file
OFILE=shr.o
####OFILE=${BASENAME}.o
# Remove any old files from previous make
rm -f ${LIBRARY} ${EXPFILE} ${OFILE}
# Pick a way to use nm -gt
NM=${NM-/bin/nm -eC}
# Determine which version of AIX this is
AIXVERSION=`uname -v`
# Pick a way to tell the linker there's no entrypoint -gt
case ${AIXVERSION}
{
3*)
ENTRY='-e _nostart'
;;
4*)
ENTRY=-bnoentry
;;
*)
echo "Error in mklib.aix!"
exit 1
;;
}
# Other libraries which we may be dependent on. Since we make the libraries
# in the order libGL.a, libaGLU.a, libglut.a just depends on its predecessor.
# modified to make otherlibs in the form of -lfoo -gt
OTHERLIBS=`ls ../lib/*.a | sed "s/..\/lib\/lib/-l/g" | sed "s/\.a//g"`
##echo OTHERLIBS are ${OTHERLIBS}
# Make exports (.exp) file header
echo "#! ${LIBRARY}" > ${EXPFILE}
# Append list of exported symbols to exports file -gt
case ${AIXVERSION}
{
3*)
${NM} ${OBJECTS} | awk -F'|' '{
if ($3 != "extern" || substr($7,1,1) == " ") continue
sub (" *", "", $1); sub (" *", "", $7)
if ( (($7 == ".text") || ($7 == ".data") || ($7 == ".bss")) \
&& ( substr($1,1,1) != ".")) {
if (substr ($1, 1, 7) != "__sinit" &&
substr ($1, 1, 7) != "__sterm") {
if (substr ($1, 1, 5) == "__tf1")
print (substr ($1, 7))
else if (substr ($1, 1, 5) == "__tf9")
print (substr ($1, 15))
else
print $1
}
}
}' | sort -u >> ${EXPFILE}
;;
4*)
${NM} ${OBJECTS} | awk '{
if ((($2 == "T") || ($2 == "D") || ($2 == "B")) \
&& ( substr($1,1,1) != ".")) {
if (substr ($1, 1, 7) != "__sinit" &&
substr ($1, 1, 7) != "__sterm") {
if (substr ($1, 1, 5) == "__tf1")
print (substr ($1, 7))
else if (substr ($1, 1, 5) == "__tf9")
print (substr ($1, 15))
else
print $1
}
}
}' | sort -u >> ${EXPFILE}
;;
}
# This next line is a hack to allow full compatibility with IBM's OpenGL
# libraries. IBM mistakenly exports glLoadIdentity from the libGLU.a
# library. We have to do the same thing. Problem reported by Yemi Adesanya
# (adesanya@afsmail.cern.ch) and Patrick Brown (pbrown@austin.ibm.com)
if [ "${BASENAME}" = libGLU ] ; then
echo "glLoadIdentity" >> ${EXPFILE}
fi
# Make the shared lib file
cc -o ${OFILE} ${OBJECTS} -L../lib ${OTHERLIBS} -lX11 -lXext -lXmu -lXi -lm -lc -bE:${EXPFILE} -bM:SRE ${ENTRY}
# Make the .a file
ar ruv ${LIBRARY} ${OFILE}
# Put exports file in Mesa lib directory
mv ${EXPFILE} ../lib
# Remove OFILE
rm -f ${OFILE}
#NOTES
# AIX 4.x /usr/bin/nm -B patch from ssclift@mach.me.queensu.ca (Simon Clift)
# Robustified symbol extraction for AIX 3 and 4
# Greg Thompson <gregt@visix.com>

38
bin/mklib.ar-ruv Executable file
View File

@@ -0,0 +1,38 @@
#!/bin/sh
# Make a standard Unix .a library file with 'ar ruv'
#--identification------------------------------------------------------
# $Id: mklib.ar-ruv,v 1.2 1999/09/15 15:10:20 brianp Exp $
# $Log: mklib.ar-ruv,v $
# Revision 1.2 1999/09/15 15:10:20 brianp
# added third, tiny version number to arguments
#
# Revision 1.1 1999/08/19 13:52:57 brianp
# initial check-in (post-crash)
#
#--common--------------------------------------------------------------
LIBRARY=$1
shift 1
MAJOR=$1
shift 1
MINOR=$1
shift 1
TINY=$1
shift 1
OBJECTS=$*
#--platform-------------------------------------------------------------
#ar ruv $LIBRARY $OBJECTS
ar ru $LIBRARY $OBJECTS

View File

@@ -1,251 +0,0 @@
#!/usr/bin/env python
#
# Copyright 2012 VMware Inc
# Copyright 2008-2009 Jose Fonseca
#
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
#
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
#
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
# THE SOFTWARE.
#
"""Perf annotate for JIT code.
Linux `perf annotate` does not work with JIT code. This script takes the data
produced by `perf script` command, plus the diassemblies outputed by gallivm
into /tmp/perf-XXXXX.map.asm and produces output similar to `perf annotate`.
See docs/llvmpipe.html for usage instructions.
The `perf script` output parser was derived from the gprof2dot.py script.
"""
import sys
import os.path
import re
import optparse
import subprocess
class Parser:
"""Parser interface."""
def __init__(self):
pass
def parse(self):
raise NotImplementedError
class LineParser(Parser):
"""Base class for parsers that read line-based formats."""
def __init__(self, file):
Parser.__init__(self)
self._file = file
self.__line = None
self.__eof = False
self.line_no = 0
def readline(self):
line = self._file.readline()
if not line:
self.__line = ''
self.__eof = True
else:
self.line_no += 1
self.__line = line.rstrip('\r\n')
def lookahead(self):
assert self.__line is not None
return self.__line
def consume(self):
assert self.__line is not None
line = self.__line
self.readline()
return line
def eof(self):
assert self.__line is not None
return self.__eof
mapFile = None
def lookupMap(filename, matchSymbol):
global mapFile
mapFile = filename
stream = open(filename, 'rt')
for line in stream:
start, length, symbol = line.split()
start = int(start, 16)
length = int(length,16)
if symbol == matchSymbol:
return start
return None
def lookupAsm(filename, desiredFunction):
stream = open(filename + '.asm', 'rt')
while stream.readline() != desiredFunction + ':\n':
pass
asm = []
line = stream.readline().strip()
while line:
addr, instr = line.split(':', 1)
addr = int(addr)
asm.append((addr, instr))
line = stream.readline().strip()
return asm
samples = {}
class PerfParser(LineParser):
"""Parser for linux perf callgraph output.
It expects output generated with
perf record -g
perf script
"""
def __init__(self, infile, symbol):
LineParser.__init__(self, infile)
self.symbol = symbol
def readline(self):
# Override LineParser.readline to ignore comment lines
while True:
LineParser.readline(self)
if self.eof() or not self.lookahead().startswith('#'):
break
def parse(self):
# read lookahead
self.readline()
while not self.eof():
self.parse_event()
asm = lookupAsm(mapFile, self.symbol)
addresses = samples.keys()
addresses.sort()
total_samples = 0
sys.stdout.write('%s:\n' % self.symbol)
for address, instr in asm:
try:
sample = samples.pop(address)
except KeyError:
sys.stdout.write(6*' ')
else:
sys.stdout.write('%6u' % (sample))
total_samples += sample
sys.stdout.write('%6u: %s\n' % (address, instr))
print 'total:', total_samples
assert len(samples) == 0
sys.exit(0)
def parse_event(self):
if self.eof():
return
line = self.consume()
assert line
callchain = self.parse_callchain()
if not callchain:
return
def parse_callchain(self):
callchain = []
while self.lookahead():
function = self.parse_call(len(callchain) == 0)
if function is None:
break
callchain.append(function)
if self.lookahead() == '':
self.consume()
return callchain
call_re = re.compile(r'^\s+(?P<address>[0-9a-fA-F]+)\s+(?P<symbol>.*)\s+\((?P<module>[^)]*)\)$')
def parse_call(self, first):
line = self.consume()
mo = self.call_re.match(line)
assert mo
if not mo:
return None
if not first:
return None
function_name = mo.group('symbol')
if not function_name:
function_name = mo.group('address')
module = mo.group('module')
function_id = function_name + ':' + module
address = mo.group('address')
address = int(address, 16)
if function_name != self.symbol:
return None
start_address = lookupMap(module, function_name)
address -= start_address
#print function_name, module, address
samples[address] = samples.get(address, 0) + 1
return True
def main():
"""Main program."""
optparser = optparse.OptionParser(
usage="\n\t%prog [options] symbol_name")
(options, args) = optparser.parse_args(sys.argv[1:])
if len(args) != 1:
optparser.error('wrong number of arguments')
symbol = args[0]
p = subprocess.Popen(['perf', 'script'], stdout=subprocess.PIPE, stderr=subprocess.PIPE)
parser = PerfParser(p.stdout, symbol)
parser.parse()
if __name__ == '__main__':
main()
# vim: set sw=4 et:

View File

@@ -1,117 +0,0 @@
#!/usr/bin/env python3
# Copyright © 2019 Intel Corporation
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
"""Update the main page, release notes, and calendar."""
import argparse
import calendar
import datetime
import pathlib
from lxml import (
etree,
html,
)
def calculate_previous_version(version: str, is_point: bool) -> str:
"""Calculate the previous version to compare to.
In the case of -rc to final that verison is the previous .0 release,
(19.3.0 in the case of 20.0.0, for example). for point releases that is
the last point release. This value will be the same as the input value
for a poiont release, but different for a major release.
"""
if '-' in version:
version = version.split('-')[0]
if is_point:
return version
base = version.split('.')
if base[1] == '0':
base[0] = str(int(base[0]) - 1)
base[1] = '3'
else:
base[1] = str(int(base[1]) - 1)
return '.'.join(base)
def is_point_release(version: str) -> bool:
return not version.endswith('.0')
def update_index(is_point: bool, version: str, previous_version: str) -> None:
p = pathlib.Path(__file__).parent.parent / 'docs' / 'index.html'
with p.open('rt') as f:
tree = html.parse(f)
news = tree.xpath('.//h1')[0]
date = datetime.date.today()
month = calendar.month_name[date.month]
header = etree.Element('h2')
header.text = f"{month} {date.day}, {date.year}"
body = etree.Element('p')
a = etree.SubElement(
body, 'a', attrib={'href': f'relnotes/{previous_version}.html'})
a.text = f"Mesa {previous_version}"
if is_point:
a.tail = " is released. This is a bug fix release."
else:
a.tail = (" is released. This is a new development release. "
"See the release notes for mor information about this release.")
root = news.getparent()
index = root.index(news) + 1
root.insert(index, body)
root.insert(index, header)
tree.write(p.as_posix(), method='html')
def update_release_notes(previous_version: str) -> None:
p = pathlib.Path(__file__).parent.parent / 'docs' / 'relnotes.html'
with p.open('rt') as f:
tree = html.parse(f)
li = etree.Element('li')
a = etree.SubElement(li, 'a', href=f'relnotes/{previous_version}.html')
a.text = f'{previous_version} release notes'
ul = tree.xpath('.//ul')[0]
ul.insert(0, li)
tree.write(p.as_posix(), method='html')
def main() -> None:
parser = argparse.ArgumentParser()
parser.add_argument('version', help="The released version.")
args = parser.parse_args()
is_point = is_point_release(args.version)
previous_version = calculate_previous_version(args.version, is_point)
update_index(is_point, args.version, previous_version)
update_release_notes(previous_version)
if __name__ == "__main__":
main()

View File

@@ -1,134 +0,0 @@
#!/usr/bin/env python
import argparse
import os
import platform
import subprocess
# This list contains symbols that _might_ be exported for some platforms
PLATFORM_SYMBOLS = [
'__bss_end__',
'__bss_start__',
'__bss_start',
'__end__',
'_bss_end__',
'_edata',
'_end',
'_fini',
'_init',
]
def get_symbols(nm, lib):
'''
List all the (non platform-specific) symbols exported by the library
'''
symbols = []
platform_name = platform.system()
output = subprocess.check_output([nm, '-gP', lib],
stderr=open(os.devnull, 'w')).decode("ascii")
for line in output.splitlines():
fields = line.split()
if len(fields) == 2 or fields[1] == 'U':
continue
symbol_name = fields[0]
if platform_name == 'Linux':
if symbol_name in PLATFORM_SYMBOLS:
continue
elif platform_name == 'Darwin':
assert symbol_name[0] == '_'
symbol_name = symbol_name[1:]
symbols.append(symbol_name)
return symbols
def main():
parser = argparse.ArgumentParser()
parser.add_argument('--symbols-file',
action='store',
required=True,
help='path to file containing symbols')
parser.add_argument('--lib',
action='store',
required=True,
help='path to library')
parser.add_argument('--nm',
action='store',
required=True,
help='path to binary (or name in $PATH)')
args = parser.parse_args()
try:
lib_symbols = get_symbols(args.nm, args.lib)
except:
# We can't run this test, but we haven't technically failed it either
# Return the GNU "skip" error code
exit(77)
mandatory_symbols = []
optional_symbols = []
with open(args.symbols_file) as symbols_file:
qualifier_optional = '(optional)'
for line in symbols_file.readlines():
# Strip comments
line = line.split('#')[0]
line = line.strip()
if not line:
continue
# Line format:
# [qualifier] symbol
qualifier = None
symbol = None
fields = line.split()
if len(fields) == 1:
symbol = fields[0]
elif len(fields) == 2:
qualifier = fields[0]
symbol = fields[1]
else:
print(args.symbols_file + ': invalid format: ' + line)
exit(1)
# The only supported qualifier is 'optional', which means the
# symbol doesn't have to be exported by the library
if qualifier and not qualifier == qualifier_optional:
print(args.symbols_file + ': invalid qualifier: ' + qualifier)
exit(1)
if qualifier == qualifier_optional:
optional_symbols.append(symbol)
else:
mandatory_symbols.append(symbol)
unknown_symbols = []
for symbol in lib_symbols:
if symbol in mandatory_symbols:
continue
if symbol in optional_symbols:
continue
if symbol[:2] == '_Z':
# Ignore random C++ symbols
#TODO: figure out if there's any way to avoid exporting them in the first place
continue
unknown_symbols.append(symbol)
missing_symbols = [
sym for sym in mandatory_symbols if sym not in lib_symbols
]
for symbol in unknown_symbols:
print(args.lib + ': unknown symbol exported: ' + symbol)
for symbol in missing_symbols:
print(args.lib + ': missing symbol: ' + symbol)
if unknown_symbols or missing_symbols:
exit(1)
exit(0)
if __name__ == '__main__':
main()

View File

@@ -1,3 +0,0 @@
{
radeon_drm_winsys_create;
};

View File

@@ -1,6 +0,0 @@
VERSION_1 {
global:
main;
local:
*;
};

124
common.py
View File

@@ -1,124 +0,0 @@
#######################################################################
# Common SCons code
import os
import os.path
import re
import subprocess
import sys
import platform as _platform
import SCons.Script.SConscript
#######################################################################
# Defaults
host_platform = _platform.system().lower()
if host_platform.startswith('cygwin'):
host_platform = 'cygwin'
# MSYS2 default platform selection.
if host_platform.startswith('mingw'):
host_platform = 'windows'
# Search sys.argv[] for a "platform=foo" argument since we don't have
# an 'env' variable at this point.
if 'platform' in SCons.Script.ARGUMENTS:
target_platform = SCons.Script.ARGUMENTS['platform']
else:
target_platform = host_platform
_machine_map = {
'x86': 'x86',
'i386': 'x86',
'i486': 'x86',
'i586': 'x86',
'i686': 'x86',
'BePC': 'x86',
'Intel': 'x86',
'ppc': 'ppc',
'BeBox': 'ppc',
'BeMac': 'ppc',
'AMD64': 'x86_64',
'x86_64': 'x86_64',
'sparc': 'sparc',
'sun4u': 'sparc',
}
# find host_machine value
if 'PROCESSOR_ARCHITECTURE' in os.environ:
host_machine = os.environ['PROCESSOR_ARCHITECTURE']
else:
host_machine = _platform.machine()
host_machine = _machine_map.get(host_machine, 'generic')
# MSYS2 default machine selection.
if _platform.system().lower().startswith('mingw') and 'MSYSTEM' in os.environ:
if os.environ['MSYSTEM'] == 'MINGW32':
host_machine = 'x86'
if os.environ['MSYSTEM'] == 'MINGW64':
host_machine = 'x86_64'
default_machine = host_machine
default_toolchain = 'default'
# MSYS2 default toolchain selection.
if _platform.system().lower().startswith('mingw'):
default_toolchain = 'mingw'
if target_platform == 'windows' and host_platform != 'windows':
default_machine = 'x86'
default_toolchain = 'crossmingw'
# find default_llvm value
if 'LLVM' in os.environ or 'LLVM_CONFIG' in os.environ:
default_llvm = 'yes'
else:
default_llvm = 'no'
try:
if target_platform != 'windows' and \
subprocess.call(['llvm-config', '--version'],
stdout=subprocess.PIPE) == 0:
default_llvm = 'yes'
except:
pass
#######################################################################
# Common options
def AddOptions(opts):
try:
from SCons.Variables.BoolVariable import BoolVariable as BoolOption
except ImportError:
from SCons.Options.BoolOption import BoolOption
try:
from SCons.Variables.EnumVariable import EnumVariable as EnumOption
except ImportError:
from SCons.Options.EnumOption import EnumOption
opts.Add(EnumOption('build', 'build type', 'debug',
allowed_values=('debug', 'checked', 'profile',
'release')))
opts.Add(BoolOption('verbose', 'verbose output', 'no'))
opts.Add(EnumOption('machine', 'use machine-specific assembly code',
default_machine,
allowed_values=('generic', 'ppc', 'x86', 'x86_64')))
opts.Add(EnumOption('platform', 'target platform', host_platform,
allowed_values=('cygwin', 'darwin', 'freebsd', 'haiku',
'linux', 'sunos', 'windows')))
opts.Add(BoolOption('embedded', 'embedded build', 'no'))
opts.Add(BoolOption('analyze',
'enable static code analysis where available', 'no'))
opts.Add(BoolOption('asan', 'enable Address Sanitizer', 'no'))
opts.Add('toolchain', 'compiler toolchain', default_toolchain)
opts.Add(BoolOption('llvm', 'use LLVM', default_llvm))
opts.Add(BoolOption('force_scons', 'Force enable scons on deprecated platforms', 'false'))
opts.Add(BoolOption('openmp', 'EXPERIMENTAL: compile with openmp (swrast)',
'no'))
opts.Add(BoolOption('debug', 'DEPRECATED: debug build', 'yes'))
opts.Add(BoolOption('profile', 'DEPRECATED: profile build', 'no'))
opts.Add(BoolOption('quiet', 'DEPRECATED: profile build', 'yes'))
opts.Add(BoolOption('swr', 'Build OpenSWR', 'no'))
if host_platform == 'windows':
opts.Add('MSVC_VERSION', 'Microsoft Visual C/C++ version')
opts.Add('MSVC_USE_SCRIPT', 'Microsoft Visual C/C++ vcvarsall script', True)

21
descrip.mms Normal file
View File

@@ -0,0 +1,21 @@
# Makefile for Mesa for VMS
# contributed by Jouk Jansen joukj@hrem.stm.tudelft.nl
macro :
@ macro=""
.ifdef NOSHARE
.else
@ if f$getsyi("HW_MODEL") .ge. 1024 then macro= "/MACRO=(SHARE=1)"
.endif
$(MMS)$(MMSQUALIFIERS)'macro' all
all :
if f$search("lib.dir") .eqs. "" then create/directory [.lib]
set default [.src]
$(MMS)$(MMSQUALIFIERS)
set default [-.progs.demos]
$(MMS)$(MMSQUALIFIERS)
set default [-.xdemos]
$(MMS)$(MMSQUALIFIERS)
set default [-.tests]
$(MMS)$(MMSQUALIFIERS)

View File

@@ -1,4 +0,0 @@
Known issues in the ARB_color_buffer_float implementation:
- Rendering to multiple render targets, some fixed-point, some floating-point, with FIXED_ONLY fragment clamping and polygon smooth enabled may write incorrect values to the fixed point buffers (depends on spec interpretation)
- For fragment programs with ARB_fog_* options, colors are clamped before fog application regardless of the fragment clamping setting (this depends on spec interpretation)

490
docs/COPYING Normal file
View File

@@ -0,0 +1,490 @@
Some parts of Mesa are copyrighted under the GNU LGPL. See the
Mesa/docs/COPYRIGHT file for details.
The following is the standard GNU copyright file.
----------------------------------------------------------------------
GNU LIBRARY GENERAL PUBLIC LICENSE
Version 2, June 1991
Copyright (C) 1991 Free Software Foundation, Inc.
675 Mass Ave, Cambridge, MA 02139, USA
Everyone is permitted to copy and distribute verbatim copies
of this license document, but changing it is not allowed.
[This is the first released version of the library GPL. It is
numbered 2 because it goes with version 2 of the ordinary GPL.]
Preamble
The licenses for most software are designed to take away your
freedom to share and change it. By contrast, the GNU General Public
Licenses are intended to guarantee your freedom to share and change
free software--to make sure the software is free for all its users.
This license, the Library General Public License, applies to some
specially designated Free Software Foundation software, and to any
other libraries whose authors decide to use it. You can use it for
your libraries, too.
When we speak of free software, we are referring to freedom, not
price. Our General Public Licenses are designed to make sure that you
have the freedom to distribute copies of free software (and charge for
this service if you wish), that you receive source code or can get it
if you want it, that you can change the software or use pieces of it
in new free programs; and that you know you can do these things.
To protect your rights, we need to make restrictions that forbid
anyone to deny you these rights or to ask you to surrender the rights.
These restrictions translate to certain responsibilities for you if
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For example, if you distribute copies of the library, whether gratis
or for a fee, you must give the recipients all the rights that we gave
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Our method of protecting your rights has two steps: (1) copyright
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Finally, any free program is threatened constantly by software
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Appendix: How to Apply These Terms to Your New Libraries
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redistribution under these terms (or, alternatively, under the terms of the
ordinary General Public License).
To apply these terms, attach the following notices to the library. It is
safest to attach them to the start of each source file to most effectively
convey the exclusion of warranty; and each file should have at least the
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<one line to give the library's name and a brief idea of what it does.>
Copyright (C) <year> <name of author>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Library General Public
License as published by the Free Software Foundation; either
version 2 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Library General Public License for more details.
You should have received a copy of the GNU Library General Public
License along with this library; if not, write to the Free
Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
Also add information on how to contact you by electronic and paper mail.
You should also get your employer (if you work as a programmer) or your
school, if any, to sign a "copyright disclaimer" for the library, if
necessary. Here is a sample; alter the names:
Yoyodyne, Inc., hereby disclaims all copyright interest in the
library `Frob' (a library for tweaking knobs) written by James Random Hacker.
<signature of Ty Coon>, 1 April 1990
Ty Coon, President of Vice
That's all there is to it!

182
docs/INSTALL.GNU Normal file
View File

@@ -0,0 +1,182 @@
Basic Installation
==================
These are generic installation instructions.
The `configure' shell script attempts to guess correct values for
various system-dependent variables used during compilation. It uses
those values to create a `Makefile' in each directory of the package.
It may also create one or more `.h' files containing system-dependent
definitions. Finally, it creates a shell script `config.status' that
you can run in the future to recreate the current configuration, a file
`config.cache' that saves the results of its tests to speed up
reconfiguring, and a file `config.log' containing compiler output
(useful mainly for debugging `configure').
If you need to do unusual things to compile the package, please try
to figure out how `configure' could check whether to do them, and mail
diffs or instructions to the address given in the `README' so they can
be considered for the next release. If at some point `config.cache'
contains results you don't want to keep, you may remove or edit it.
The file `configure.in' is used to create `configure' by a program
called `autoconf'. You only need `configure.in' if you want to change
it or regenerate `configure' using a newer version of `autoconf'.
The simplest way to compile this package is:
1. `cd' to the directory containing the package's source code and type
`./configure' to configure the package for your system. If you're
using `csh' on an old version of System V, you might need to type
`sh ./configure' instead to prevent `csh' from trying to execute
`configure' itself.
Running `configure' takes awhile. While running, it prints some
messages telling which features it is checking for.
2. Type `make' to compile the package.
3. Optionally, type `make check' to run any self-tests that come with
the package.
4. Type `make install' to install the programs and any data files and
documentation.
5. You can remove the program binaries and object files from the
source code directory by typing `make clean'. To also remove the
files that `configure' created (so you can compile the package for
a different kind of computer), type `make distclean'. There is
also a `make maintainer-clean' target, but that is intended mainly
for the package's developers. If you use it, you may have to get
all sorts of other programs in order to regenerate files that came
with the distribution.
Compilers and Options
=====================
Some systems require unusual options for compilation or linking that
the `configure' script does not know about. You can give `configure'
initial values for variables by setting them in the environment. Using
a Bourne-compatible shell, you can do that on the command line like
this:
CC=c89 CFLAGS=-O2 LIBS=-lposix ./configure
Or on systems that have the `env' program, you can do it like this:
env CPPFLAGS=-I/usr/local/include LDFLAGS=-s ./configure
Compiling For Multiple Architectures
====================================
You can compile the package for more than one kind of computer at the
same time, by placing the object files for each architecture in their
own directory. To do this, you must use a version of `make' that
supports the `VPATH' variable, such as GNU `make'. `cd' to the
directory where you want the object files and executables to go and run
the `configure' script. `configure' automatically checks for the
source code in the directory that `configure' is in and in `..'.
If you have to use a `make' that does not supports the `VPATH'
variable, you have to compile the package for one architecture at a time
in the source code directory. After you have installed the package for
one architecture, use `make distclean' before reconfiguring for another
architecture.
Installation Names
==================
By default, `make install' will install the package's files in
`/usr/local/bin', `/usr/local/man', etc. You can specify an
installation prefix other than `/usr/local' by giving `configure' the
option `--prefix=PATH'.
You can specify separate installation prefixes for
architecture-specific files and architecture-independent files. If you
give `configure' the option `--exec-prefix=PATH', the package will use
PATH as the prefix for installing programs and libraries.
Documentation and other data files will still use the regular prefix.
In addition, if you use an unusual directory layout you can give
options like `--bindir=PATH' to specify different values for particular
kinds of files. Run `configure --help' for a list of the directories
you can set and what kinds of files go in them.
If the package supports it, you can cause programs to be installed
with an extra prefix or suffix on their names by giving `configure' the
option `--program-prefix=PREFIX' or `--program-suffix=SUFFIX'.
Optional Features
=================
Some packages pay attention to `--enable-FEATURE' options to
`configure', where FEATURE indicates an optional part of the package.
They may also pay attention to `--with-PACKAGE' options, where PACKAGE
is something like `gnu-as' or `x' (for the X Window System). The
`README' should mention any `--enable-' and `--with-' options that the
package recognizes.
For packages that use the X Window System, `configure' can usually
find the X include and library files automatically, but if it doesn't,
you can use the `configure' options `--x-includes=DIR' and
`--x-libraries=DIR' to specify their locations.
Specifying the System Type
==========================
There may be some features `configure' can not figure out
automatically, but needs to determine by the type of host the package
will run on. Usually `configure' can figure that out, but if it prints
a message saying it can not guess the host type, give it the
`--host=TYPE' option. TYPE can either be a short name for the system
type, such as `sun4', or a canonical name with three fields:
CPU-COMPANY-SYSTEM
See the file `config.sub' for the possible values of each field. If
`config.sub' isn't included in this package, then this package doesn't
need to know the host type.
If you are building compiler tools for cross-compiling, you can also
use the `--target=TYPE' option to select the type of system they will
produce code for and the `--build=TYPE' option to select the type of
system on which you are compiling the package.
Sharing Defaults
================
If you want to set default values for `configure' scripts to share,
you can create a site shell script called `config.site' that gives
default values for variables like `CC', `cache_file', and `prefix'.
`configure' looks for `PREFIX/share/config.site' if it exists, then
`PREFIX/etc/config.site' if it exists. Or, you can set the
`CONFIG_SITE' environment variable to the location of the site script.
A warning: not all `configure' scripts look for a site script.
Operation Controls
==================
`configure' recognizes the following options to control how it
operates.
`--cache-file=FILE'
Use and save the results of the tests in FILE instead of
`./config.cache'. Set FILE to `/dev/null' to disable caching, for
debugging `configure'.
`--help'
Print a summary of the options to `configure', and exit.
`--quiet'
`--silent'
`-q'
Do not print messages saying which checks are being made. To
suppress all normal output, redirect it to `/dev/null' (any error
messages will still be shown).
`--srcdir=DIR'
Look for the package's source code in directory DIR. Usually
`configure' can determine that directory automatically.
`--version'
Print the version of Autoconf used to generate the `configure'
script, and exit.
`configure' also accepts some other, not widely useful, options.

View File

@@ -8,12 +8,13 @@ Name Strings
Contact
Brian Paul, Tungsten Graphics, Inc. (brian.paul 'at' tungstengraphics.com)
Brian Paul, Tungsten Graphics, Inc. (brian 'at' tungstengraphics.com)
Keith Whitwell, Tungsten Graphics, Inc. (keith 'at' tungstengraphics.com)
Status
Obsolete. Effectively superseded by ARB_vertex_buffer_object.
Shipping (Mesa 4.0.4 and later. Only implemented in particular
XFree86/DRI drivers.)
Version
@@ -47,7 +48,7 @@ Issues
New Procedures and Functions
unsigned int glXGetAGPOffsetMESA( const void *pointer )
GLuint glXGetAGPOffsetMESA( const GLvoid *pointer )
New Tokens
@@ -66,7 +67,7 @@ Additions to Chapter 3 the GLX 1.4 Specification (Functions and Errors)
On "PC" computers, AGP memory can be allocated with glXAllocateMemoryNV
and freed with glXFreeMemoryNV. Sometimes it's useful to know where a
block of AGP memory is located with respect to the start of the AGP
aperture. The function
aperature. The function
GLuint glXGetAGPOffsetMESA( const GLvoid *pointer )
@@ -91,4 +92,3 @@ Revision History
20 September 2002 - Initial draft
2 October 2002 - finished GLX chapter 3 additions
27 July 2004 - use unsigned int instead of GLuint, void instead of GLvoid

View File

@@ -0,0 +1,88 @@
Name
MESA_copy_sub_buffer
Name Strings
GLX_MESA_copy_sub_buffer
Contact
Brian Paul (brian 'at' mesa3d.org)
Status
Shipping since Mesa 2.6 in February, 1998.
Version
Last Modified Date: 8 June 2000
Number
215
Dependencies
OpenGL 1.0 or later is required.
GLX 1.0 or later is required.
Overview
The glxCopySubBufferMESA() function copies a rectangular region
of the back color buffer to the front color buffer. This can be
used to quickly repaint 3D windows in response to expose events
when the back color buffer cannot be damaged by other windows.
IP Status
Open-source; freely implementable.
Issues
None.
New Procedures and Functions
void glXCopySubBufferMESA( Display *dpy, GLXDrawable drawable,
int x, int y, int width, int height );
New Tokens
None.
Additions to Chapter 3 of the GLX 1.3 Specification (Functions and Errors)
Add to section 3.3.10 Double Buffering:
The function
void glXCopySubBufferMESA( Display *dpy, GLXDrawable drawable,
int x, int y, int width, int height );
may be used to copy a rectangular region of the back color buffer to
the front color buffer. This can be used to quickly repaint 3D windows
in response to expose events when the back color buffer cannot be
damaged by other windows.
<x> and <y> indicates the lower-left corner of the region to copy and
<width> and <height> indicate the size in pixels. Coordinate (0,0)
corresponds to the lower-left pixel of the window, like glReadPixels.
GLX Protocol
None at this time. The extension is implemented in terms of ordinary
Xlib protocol inside of Mesa.
Errors
None.
New State
None.
Revision History
8 June 2000 - initial specification

View File

@@ -8,7 +8,7 @@ Name Strings
Contact
Brian Paul, Tungsten Graphics, Inc. (brian.paul 'at' tungstengraphics.com)
Brian Paul, Tungsten Graphics, Inc. (brian 'at' tungstengraphics.com)
Keith Whitwell, Tungsten Graphics, Inc. (keith 'at' tungstengraphics.com)
Status
@@ -48,7 +48,7 @@ IP Status
Issues
1. Should we also define UNPACK_INVERT_MESA for glDrawPixels, etc?
1. Should we also defined UNPACK_INVERT_MESA for glDrawPixels, etc?
Resolved: No, we're only concerned with pixel packing. There are other
solutions for inverting images when using glDrawPixels (negative Y pixel

View File

@@ -17,6 +17,7 @@ Status
Version
$Id: MESA_packed_depth_stencil.spec,v 1.2 2003/09/19 14:58:21 brianp Exp $
Number

View File

@@ -8,7 +8,7 @@ Name Strings
Contact
Brian Paul (brian.paul 'at' tungstengraphics.com)
Brian Paul (brian 'at' mesa3d.org)
Status

View File

@@ -8,16 +8,17 @@ Name Strings
Contact
Brian Paul (brian.paul 'at' tungstengraphics.com)
Brian Paul (brian @ tungstengraphics.com)
Status
Obsolete.
XXX - Not complete yet!!!
Version
Last Modified Date: July 20, 2003
Author Revision: 1.0
$Date: 2003/09/23 14:46:11 $ $Revision: 1.3 $
Number
@@ -133,7 +134,7 @@ New Tokens
GetFloatv and GetIntegerv:
FRAGMENT_PROGRAM_POSITION_MESA 0x8bb0
VERTEX_PROGRAM_POSITION_MESA 0x8bb5
VERTEX_PROGRAM_POSITION_MESA 0x8bb4
Accepted by the <pname> parameter of GetPointerv:

View File

@@ -8,7 +8,7 @@ Name Strings
Contact
Brian Paul (brian.paul 'at' tungstengraphics.com)
Brian Paul (brian 'at' mesa3d.org)
Status
@@ -31,12 +31,12 @@ Overview
Mesa's implementation of GLX is entirely implemented on the client side.
Therefore, Mesa cannot immediately detect when an X window or pixmap is
destroyed in order to free any ancillary data associated with the window
destroyed in order to free any ancilliary data associated with the window
or pixmap.
The glxMesaReleaseBuffers() function can be used to explicitly indicate
when the back color buffer, depth buffer, stencil buffer, and/or accumu-
lation buffer associated with a drawable can be freed.
when the back color buffer, depth buffer, stencil buffer, and/or accum-
ulation buffer associated with a drawable can be freed.
IP Status
@@ -60,7 +60,7 @@ Additions to Chapter 3 of the GLX 1.3 Specification (Functions and Errors)
Bool glXReleaseBuffersMESA( Display *dpy, GLXDrawable d );
causes all software ancillary buffers (back buffer, depth, stencil,
causes all software ancilliary buffers (back buffer, depth, stencil,
accum, etc) associated with the named drawable to be immediately
deallocated. True is returned if <d> is a valid Mesa GLX drawable,
else False is returned. After calling glXReleaseBuffersMESA, the

View File

@@ -8,14 +8,15 @@ Name Strings
Contact
Brian Paul (brian.paul 'at' tungstengraphics.com)
Brian Paul, brianp 'at' mesa3d.org
Status
Obsolete.
Shipping (since Mesa version 2.2)
Version
$Id: MESA_resize_buffers.spec,v 1.2 2000/04/04 23:29:32 brianp Exp $
Number
@@ -35,7 +36,7 @@ Overview
Mesa's glViewport command queries the current window size and updates
its internal data structors accordingly. This normally works fine
since most applications call glViewport in response to window size
since most applications call glViewport in responce to window size
changes.
In some situations, however, the application may not call glViewport
@@ -65,7 +66,7 @@ Additions to the AGL/GLX/WGL Specifications
Errors
INVALID_OPERATION is generated if glResizeBuffersMESA is called between
INVALID_OPERATION is generated if ResizeBuffersMESA is called betweeen
Begin and End.
New State

View File

@@ -8,11 +8,11 @@ Name Strings
Contact
Brian Paul (brian.paul 'at' tungstengraphics.com)
Brian Paul (brian 'at' mesa3d.org)
Status
Obsolete.
Shipping since Mesa 2.6 in February, 1998.
Version

View File

@@ -16,6 +16,7 @@ Status
Version
$Id: MESA_sprite_point.spec,v 1.2 2003/09/19 14:58:21 brianp Exp $
Number

View File

@@ -43,7 +43,7 @@ Issues
New Procedures and Functions
int glXSwapIntervalMESA(unsigned int interval)
int glXSwapIntervalMESA(int interval)
int glXGetSwapIntervalMESA(void)
New Tokens
@@ -88,8 +88,8 @@ Additions to the GLX 1.3 Specification
this is typically the time required to display both the even and odd
fields of a frame of video data.
If <interval> is set to a value of 0, buffer swaps are not synchro-
nized to a video frame. The <interval> value is silently clamped to
If <interval> is set to a value of 0, buffer swaps are not synchron-
ized to a video frame. The <interval> value is silently clamped to
the maximum implementation-dependent value supported before being
stored.
@@ -103,8 +103,11 @@ Additions to the GLX 1.3 Specification
Errors
glXSwapIntervalMESA returns GLX_BAD_VALUE if parameter <interval> is
less than zero.
glXSwapIntervalMESA returns GLX_BAD_CONTEXT if there is no current
GLXContext or if the current context is not a direct rendering context.
GLXContext.
GLX Protocol

View File

@@ -32,7 +32,7 @@ Dependencies
Overview
This extension allows an application to determine what portion of the
This extension allows an application to deterine what portion of the
swap period has elapsed since the last swap operation completed. The
"usage" value is a floating point value on the range [0,max] which is
calculated as follows:
@@ -59,7 +59,7 @@ Overview
is taken from the completion of one swap to the issuance of the next.
This representation may not be as useful as measuring between
completions, as a significant amount of time may pass between the
issuance of a swap and the swap actually occurring.
issuance of a swap and the swap actually occuring.
There is also a mechanism to determine whether a frame swap was
missed.
@@ -110,7 +110,7 @@ Additions to Chapter 6 of the 1.4 GL Specification (State and State Requests)
Additions to the GLX 1.3 Specification
The frame usage is measured as the percentage of the swap period elapsed
between two buffer-swap operations being committed. In unextended GLX the
between two buffer-swap operations being commited. In unextened GLX the
swap period is the vertical refresh time. If SGI_swap_control or
MESA_swap_control are supported, the swap period is the vertical refresh
time multiplied by the swap interval (or one if the swap interval is set
@@ -119,7 +119,7 @@ Additions to the GLX 1.3 Specification
If OML_sync_control is supported, the swap period is the vertical
refresh time multiplied by the divisor parameter to
glXSwapBuffersMscOML. The frame usage in this case is less than 1.0 if
the swap is committed before target_msc, and is greater than or equal to
the swap is commited before target_msc, and is greater than or equal to
1.0 otherwise. The actual usage value is based on the divisor and is
never less than 0.0.
@@ -143,7 +143,7 @@ Additions to the GLX 1.3 Specification
The current missed frame count and total number of swaps since
the last call to glXBeginFrameTrackingMESA can be obtained by
calling the following function:
callling the following function:
int glXQueryFrameTrackingMESA(Display *dpy,
GLXDrawable drawable,
@@ -152,7 +152,7 @@ Additions to the GLX 1.3 Specification
float *lastMissedUsage)
The location pointed to by <swapCount> will be updated with the
number of swaps that have been committed. This value may not match the
number of swaps that have been commited. This value may not match the
number of swaps that have been requested since swaps may be
queued by the implementation. This function can be called at any
time and does not synchronize to vertical blank.
@@ -171,7 +171,7 @@ Additions to the GLX 1.3 Specification
application can call glXQueryFrameTrackingMESA for a final swap and
missed frame count.
If these functions are successful, zero is returned. If the context
If these functions are succesful, zero is returned. If the context
associated with dpy and drawable is not a direct context,
GLX_BAD_CONTEXT is returned.

View File

@@ -4,7 +4,7 @@ Name
Name Strings
GL_MESA_trace
GL_MESA_TRACE
Contact
@@ -17,6 +17,7 @@ Status
Version
$Id: MESA_trace.spec,v 1.3 2003/09/19 14:58:21 brianp Exp $
Number

View File

@@ -8,7 +8,7 @@ Name Strings
Contact
Brian Paul, brian.paul 'at' tungstengraphics.com
Brian Paul, brianp 'at' mesa3d.org
Status
@@ -16,6 +16,7 @@ Status
Version
$Id: MESA_window_pos.spec,v 1.3 2000/04/04 23:29:32 brianp Exp $
Number
@@ -88,7 +89,7 @@ Additions to Chapter 2 of the OpenGL 1.2 Specification (OpenGL Operation)
WindosPos4MESA takes four values indicating x, y, z, and w.
WindowPos3MESA (or WindowPos2MESA) is analaguos, but sets only
x, y, and z with w implicitly set to 1 (or only x and y with z
implicitly set to 0 and w implicitly set to 1).
implicititly set to 0 and w implicitly set to 1).
WindowPosMESA operates like RasterPos except that the current modelview
matrix, projection matrix and viewport parameters are ignored and the
@@ -108,7 +109,7 @@ GLX Protocol
Errors
INVALID_OPERATION is generated if WindowPosMESA is called between
INVALID_OPERATION is generated if WindowPosMESA is called betweeen
Begin and End.
New State

View File

@@ -8,7 +8,7 @@ Name Strings
Contact
Brian Paul, Tungsten Graphics, Inc. (brian.paul 'at' tungstengraphics.com)
Brian Paul, Tungsten Graphics, Inc. (brian 'at' tungstengraphics.com)
Keith Whitwell, Tungsten Graphics, Inc. (keith 'at' tungstengraphics.com)
Status
@@ -26,7 +26,7 @@ Number
Dependencies
OpenGL 1.0 or later is required
This extension is written against the OpenGL 1.4 Specification.
This extensions is written against the OpenGL 1.4 Specification.
NV_texture_rectangle effects the definition of this extension.
Overview
@@ -75,14 +75,14 @@ Additions to Chapter 2 of the OpenGL 1.4 Specification (OpenGL Operation)
Additions to Chapter 3 of the OpenGL 1.4 Specification (Rasterization)
In section 3.6.4, Rasterization of Pixel Rectangles, on page 101,
In section 3.6.4, Rasterization of Pixel Rectangles, on page 102,
add the following to Table 3.8 (Packed pixel formats):
type Parameter GL Data Number of Matching
Token Name Type Components Pixel Formats
-------------- ------- ---------- -------------
UNSIGNED_SHORT_8_8_MESA ushort 2 YCBCR_MESA
UNSIGNED_SHORT_8_8_REV_MESA ushort 2 YCBCR_MESA
UNSIGNED_SHORT_8_8_MESA ushort 3 YCBCR_422_MESA
UNSIGNED_SHORT_8_8_REV_MESA ushort 3 YCBCR_422_MESA
In section 3.6.4, Rasterization of Pixel Rectangles, on page 102,
@@ -103,13 +103,13 @@ Additions to Chapter 3 of the OpenGL 1.4 Specification (Rasterization)
+-------------------------------+-------------------------------+
In section 3.6.4, Rasterization of Pixel Rectangles, on page 104,
add the following to Table 3.12 (Packed pixel field assignments):
In section 3.6.4, Rasterization of Pixel Rectangles, on page 102,
add the following to Table 3.12 (Packed pixel fiedl assignments):
First Second Third Fourth
Format Element Element Element Element
------ ------- ------- ------- -------
YCBCR_MESA luminance chroma
YCBCR_422_MESA luminance chroma
In section 3.8.1, Texture Image Specification, on page 125, add
@@ -201,4 +201,3 @@ Revision History
3 September 2003 - further clarify when YCbCr->RGB conversion takes place
19 September 2003 - a few more updates prior to submitting to extension
registry.
3 April 2004 - fix assorted inaccuracies

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@@ -0,0 +1,547 @@
<!DOCTYPE html PUBLIC "-//W3C//DTD HTML 4.01 Transitional//EN">
<html>
<head>
<title>Mini GLX Specification</title>
</head>
<body>
<h1>
<center>Mini GLX Specification</center>
</h1>
<h2>
<center>Tungsten Graphics, Inc.<br>
<br>
January 20, 2003<br>
<br>
</center>
</h2>
<p> Copyright &copy; 2002-2003 by Tungsten Graphics, Inc., Cedar Park,
Texas. All Rights Reserved. <br>
<br>
Permission is granted to make and distribute verbatim copies of this
document provided the copyright notice and this permission notice are
preserved on all copies.<br>
<br>
</p>
<h1>1. Introduction</h1>
<p>The Mini GLX interface facilitates OpenGL rendering on embedded
devices. The interface is a subset of the GLX interface, plus a minimal
set of Xlib-like functions.</p>
<p>Programs written to the Mini GLX specification should run unchanged
on systems with the X Window System and the GLX extension. The intention
is to allow flexibility for prototyping and testing.</p>
<p>This document serves as both the reference guide and programming
guide for Mini GLX.<br>
<br>
</p>
<h1>2. Mini GLX Concepts</h1>
<p>The OpenGL specification does not describe how OpenGL rendering
contexts and drawing surfaces (i.e. the frame buffer) are created and
managed. Rather, this is handled by an OpenGL window system interface,
such as Mini GLX.</p>
<p>There are three main datatypes or resources managed by Mini GLX. The
resources and their corresponding GLX or Xlib data types are:</p>
<table cellspacing="10" align="center">
<tbody>
<tr>
<td><u>Resource</u></td>
<td><u>Data type</u></td>
</tr>
<tr>
<td>pixel formats</td>
<td>X Visual and XVisualInfo</td>
</tr>
<tr>
<td>drawing surfaces</td>
<td>X Window or GLXDrawable</td>
</tr>
<tr>
<td>rendering contexts</td>
<td>GLXContext</td>
</tr>
</tbody>
</table>
<p>Pixel formats or X Visuals describe the per-pixel attributes of the
frame buffer. For example, bits per color component, Z buffer size,
stencil size, TrueColor vs PseudoColor, etc.</p>
<p>Drawing surfaces or X Windows typically describe a spatial
allocation of the frame buffer (i.e. the position and size of a
rectangular region of pixels). Since MiniGLX doesn't really support a
window system, the window is effectively the entire frame buffer.</p>
<p>A rendering context represents the current OpenGL state such as
current drawing color, line width, blending mode, texture parameters,
etc. Several rendering contexts can be created but only one can be in
use at any given time.</p>
<p>The Mini GLX interface provides all the functions needed for
choosing pixel formats, create drawing surfaces, creating rendering
contexts and binding rendering contexts to drawing surfaces.<br>
<br>
</p>
<h1>3. Using Mini GLX</h1>
<p>To use the Mini GLX interface in your application, include the
GL/miniglx.h header file at compile time:</p>
<blockquote><code> #include &lt;GL/miniglx.h&gt;<br>
</code></blockquote>
<code></code>Applications should link with libGL.so (i.e. <code>gcc
myprogram.o -lGL -o myprogram</code>). &nbsp;libGL.so implements the
MiniGLX API functions and, in turn, loads a hardware-specific device
driver (such as <code>radeon_dri.so</code>) at runtime. &nbsp;The
environment variable <code>LIBGL_DRIVERS_PATH</code> should name the
directory where these modules are located.<br>
<br>
Prior to running a MiniGXL application, the following kernel modules
must be installed:<br>
<br>
<div style="margin-left: 40px;"> agpgart.o<br>
radeonfb.o &nbsp;(assuming Radeon hardware)<br>
radeon.o &nbsp;(assuming Radeon hardware)<br>
</div>
<code></code> <br>
Finally, MiniGLX reads a configuration file (by default,<code>
/etc/miniglx.conf</code>) to determine basic configuration information.
&nbsp;The configuration file may also be located in the directory
specified by the <code>MINIGLX_CONF</code> environment variable).<br>
<br>
The remainder of this section describes the MiniGLX API functions.<br>
<br>
<h2>3.1 Initialization</h2>
<p>The XOpenDisplay function is used to initialize the graphics system:</p>
<blockquote>
<pre>Display *XOpenDisplay(const char *displayname)<br></pre>
</blockquote>
<p>The <code>displayName</code> parameter is currently ignored in Mini
GLX. It is recommended that <code>NULL</code> be passed as the<code>displayName</code>
parameter.</p>
<p>If XOpenDisplay is able to initialize the graphics system a pointer
to a Display will be returned. Otherwise, NULL will be returned.</p>
<h2>3.2 Choosing a Visual</h2>
<p>A visual (i.e. pixel format) must be chosen before a drawing surface
or rendering context can be created. This is done with the
glXChooseVisual function:</p>
<blockquote>
<pre>XVisualInfo *glXChooseVisual(Display *dpy, int screen, const int *attribList)<br></pre>
</blockquote>
<p><code>dpy</code> is a pointer to the display returned by
XOpenDisplay. </p>
<p><code>screen</code> is currently ignored by Mini GLX and should be
zero. </p>
<p><code>attribList</code> is a list of GLX attributes which describe
the desired pixel format. It is terminated by the token <code>None</code>.
The attributes are as follows:</p>
<blockquote>
<dl>
<dt><code>GLX_USE_GL</code></dt>
<dd>This attribute should always be present in order to maintain
compatibility with GLX.</dd>
<dt><code>GLX_RGBA</code></dt>
<dd>If present, only RGBA pixel formats will be considered.
Otherwise, only color index formats are considered.</dd>
<dt><code>GLX_DOUBLEBUFFER</code></dt>
<dd>if present, only double-buffered pixel formats will be chosen.</dd>
<dt><code>GLX_RED_SIZE n</code></dt>
<dd>Must be followed by a non-negative integer indicating the
minimum number of bits per red pixel component that is acceptable.</dd>
<dt><code>GLX_GREEN_SIZE n</code></dt>
<dd>Must be followed by a non-negative integer indicating the
minimum number of bits per green pixel component that is acceptable.</dd>
<dt><code>GLX_BLUE_SIZE n</code></dt>
<dd>Must be followed by a non-negative integer indicating the
minimum number of bits per blue pixel component that is acceptable.</dd>
<dt><code>GLX_ALPHA_SIZE n</code></dt>
<dd>Must be followed by a non-negative integer indicating the
minimum number of bits per alpha pixel component that is acceptable.</dd>
<dt><code>GLX_STENCIL_SIZE n</code></dt>
<dd>Must be followed by a non-negative integer indicating the
minimum number of bits per stencil value that is acceptable.</dd>
<dt><code>None</code></dt>
<dd>This token is used to terminate the attribute list.</dd>
</dl>
</blockquote>
<p>glXChooseVisual will return a pointer to an XVisualInfo object which
most closely matches the requirements of the attribute list. If there
is no visual which matches the request, NULL will be returned.</p>
<p>Note that visuals with accumulation buffers and depth buffers are
not available.<br>
<br>
</p>
<h2>3.3 Creating a Drawing Surface</h2>
<p>Drawing surfaces are created as X windows. &nbsp;For Mini GLX,
windows are <i>full-screen</i>; they cover the entire frame buffer.
&nbsp;Also, Mini GLX imposes a limit of one window. A second window
cannot be created until the first one is destroyed.</p>
<h3>3.3.1 Window Creation</h3>
<p>The XCreateWindow function is used to create a drawing surface:</p>
<blockquote>
<pre>Window XCreateWindow( Display *display,<br> Window parent,<br> int x, int y,<br> unsigned int width, unsigned int height,<br> unsigned int borderWidth,<br> int depth,<br> unsigned int class,<br> Visual *visual,<br> unsigned long valuemask,<br> XSetWindowAttributes *attributes )<br></pre>
</blockquote>
<p>The parameters are as follows:</p>
<blockquote>
<dl>
<dt><code>display</code></dt>
<dd>A Display pointer, as returned by XOpenDisplay.</dd>
<dt><code>parent</code></dt>
<dd>The parent window for the new window. For Mini GLX, this
should be<code>RootWindow(dpy, 0)</code>.</dd>
<dt><code>x, y</code></dt>
<dd>The position of the window. For Mini GLX, both values should
be zero.</dd>
<dt><code>width, height</code></dt>
<dd>The size of the window. For Mini GLX, this specifies the
desired screen size such as 1024, 768 or 1280, 1024.</dd>
<dt><code>borderWidth</code></dt>
<dd>This parameter should be zero.</dd>
<dt><code>depth</code></dt>
<dd>The pixel depth for the window. For Mini GLX this should be
the depth found in the XVisualInfo object returned by <code>glxChooseVisual</code>.</dd>
<dt><code>class</code></dt>
<dd>The window class. For Mini GLX this value should be <code>InputOutput</code>.</dd>
<dt><code>visual</code></dt>
<dd>This parameter should be the <code>visual</code> field of the <code>XVisualInfo</code>
object returned by <code>glxChooseVisual</code>.</dd>
<dt><code>valuemask</code></dt>
<dd>This parameter indicates which fields of the <code>XSetWindowAttributes</code>
are to be used. For Mini GLX this is typically the bitmask<code>CWBackPixel
| CWBorderPixel | CWColormap</code>.</dd>
<dt><code>attributes</code></dt>
<dd>Initial window attributes. Of the fields in the <code>XSetWindowAttributes</code>
structure, the<code>background_pixel</code>, <code>border_pixel</code>
and <code>colormap</code> fields should be set. &nbsp;See the discussion
below regarding colormaps.</dd>
</dl>
</blockquote>
<p><code>XCreateWindow</code> will return a window handle if it succeeds
or zero if it fails.</p>
<h3>3.3.2 Window Mapping</h3>
<p>To display the window the XMapWindow function must be called:</p>
<blockquote>
<pre>void XMapWindow(Display *dpy, Window w)</pre>
</blockquote>
<p>This function does nothing in Mini GLX but is required for Xlib/GLX
compatibility</p>
<h3>3.3.3 Colormaps<br>
</h3>
<p>Xlib requires specification of a colormap when creating a window.
&nbsp;For purposes of interoperability, Mini GLX requires this as well,
though the colormap is not actually used. &nbsp;The XCreateColormap
function is used to create a colormap:</p>
<blockquote><code>Colormap XCreateColormap(Display *dpy, Window window,
Visual *visual, int alloc)</code><br>
<code></code></blockquote>
<p>The parameters are as follows:<br>
</p>
<blockquote>
<dl>
<dt><code>dpy</code></dt>
<dd>The display handle as returned by XOpenDisplay.</dd>
<dt><code>window</code></dt>
<dd> This parameter is ignored by Mini GLX but should be the value
returned by the <code>RootWindow(dpy, 0)</code> macro.<br>
</dd>
<dt><code>visual</code></dt>
<dd>This parameter is ignored by Mini GLX but should be the visual
field of the XVisualInfo object returned by glXChooseVisual. </dd>
<dt><code>alloc</code></dt>
<dd>This parameter is ignored by Mini GLX but should be set to <code>AllocNone</code>.</dd>
</dl>
</blockquote>
<br>
<h2>3.4 Creating a Rendering Context</h2>
<p>An OpenGL rendering context is created with the <code>glXCreateContext</code>
function:</p>
<blockquote>
<pre>GLXContext glXCreateContext(Display *dpy, XVisualInfo *visInfo, GLXContext shareList, Bool direct)<br></pre>
</blockquote>
<p>The parameters are as follows:</p>
<blockquote>
<dl>
<dt><code>dpy</code></dt>
<dd>The display handle as returned by XOpenDisplay.</dd>
<dt><code>visInfo</code></dt>
<dd>The visual as returned by glXChooseVisual.</dd>
<dt><code>shareList</code></dt>
<dd>If non-zero, texture objects and display lists are shared with
the named rendering context. If zero, texture objects and display lists
will (initially) be private to this context. They may be shared when a
subsequent context is created.</dd>
<dt><code>direct</code></dt>
<dd>Specifies whether direct or indirect rendering is desired. For
Mini GLX this value is ignored but it should be set to <code>True</code>.</dd>
</dl>
</blockquote>
<p><code>glXCreateContext</code> will return a GLXContext handle if it
succeeds or zero if it fails due to invalid parameter or insufficient
resources.<br>
<br>
</p>
<h2>3.5 Binding a Rendering Context</h2>
<p>The final step before beginning OpenGL rendering is to bind (i.e.
activate) a rendering context and drawing surface with the
glXMakeCurrent function:</p>
<blockquote>
<pre>Bool glXMakeCurrent(Display *dpy, GLXDrawable drawable, GLXContext ctx)<br></pre>
</blockquote>
<p>The parameters are as follows:</p>
<blockquote>
<dl>
<dt><code>dpy</code></dt>
<dd>The display handle, as returned by XOpenDisplay.</dd>
<dt><code>drawable</code></dt>
<dd>The window or drawable to bind to the rendering context. This
should be the value returned by XCreateWindow.</dd>
<dt><code>ctx</code></dt>
<dd>The rendering context to bind, as returned by glXCreateContext.</dd>
</dl>
</blockquote>
<p>If glXMakeCurrent succeeds True is returned. Otherwise False is
returned to indicate an invalid display, window or context parameter.</p>
<p>After the rendering context has been bound to the drawing surface
OpenGL rendering can begin.</p>
<p>The current rendering context may be unbound by calling
glXMakeCurrent with the window and context parameters set to zero.</p>
<p>An application may create any number of rendering contexts and bind
them as needed. Note that binding a rendering context is generally not a
light-weight operation. &nbsp;Most simple OpenGL applications create
only one rendering context.<br>
<br>
</p>
<h2>3.6 Color Buffer Swapping</h2>
<p>A double buffered window has two color buffers: a front buffer and a
back buffer. Normally, rendering is directed to the back buffer while
the front buffer is displayed. When rendering of a frame is finished
the front and back buffers are swapped to provide the illusion of
instanteous screen updates.</p>
<p>The color buffers for a particular window (i.e. drawable) may be
swapped with the glXSwapBuffers command:</p>
<blockquote>
<pre>void glXSwapBuffers(Display *dpy, GLXDrawable drawable)<br></pre>
</blockquote>
Any pending rendering commands will be completed before the buffer swap
takes place.<br>
<br>
Calling glXSwapBuffers on a window which is single-buffered has no
effect.<br>
<br>
<h2>3.7 Releasing Resources</h2>
<h3>3.7.1 Releasing Rendering Contexts</h3>
<p>A rendering context may be destroyed by calling glXDestroyContext:</p>
<blockquote>
<pre>void glXDestroyContext(Display *dpy, GLXContext ctx)<br></pre>
</blockquote>
<h3>3.7.2 Releasing Windows</h3>
<p>A window may be destroyed by calling XDestroyWindow:</p>
<blockquote>
<pre>void XDestroyWindow(Display *dpy, Window window)<br></pre>
</blockquote>
<h3>3.7.3 Releasing Visuals</h3>
<p>An XVisualInfo object may be freed by calling XFree:</p>
<blockquote>
<pre>void XFree(void *data)<br></pre>
</blockquote>
<h3>3.7.4 Releasing Colormaps</h3>
<p>A colormap may be freed by calling XFreeColormap:</p>
<blockquote>
<pre>void XFreeColormap(Display *dpy, Colormap colormap)<br></pre>
</blockquote>
<h3>3.7.4 Releasing Display Resources</h3>
<p>When the application is about to exit, the resources associated with
the graphics system can be released by calling XCloseDisplay:</p>
<blockquote>
<pre>void XCloseDisplay(Display *dpy)<br></pre>
</blockquote>
<p>The display handle becomes invalid at this point.<br>
<br>
</p>
<h2>3.8 Query Functions</h2>
<h3>3.8.1 Querying Available Visuals</h3>
A list of all available visuals can be obtained with the XGetVisualInfo
function:<br>
<br>
<div style="margin-left: 40px;"><code>XVisualInfo
*XGetVisualInfo(Display *dpy, long vinfo_mask, XVisualInfo
*vinfo_template, int *nitems_return)<br>
</code></div>
<br>
The parameters are as follows:<br>
<blockquote>
<dl>
<dt><code>dpy</code></dt>
<dd>The display handle, as returned by XOpenDisplay.</dd>
<dt><code>vinfo_mask</code></dt>
<dd>A bitmask indicating which fields of the vinfo_template are to
be matched. &nbsp;The value must be VisualScreenMask.</dd>
<dt><code>vinfo_template</code></dt>
<dd>A template whose fields indicate which visual attributes must
be matched by the results. &nbsp;The screen field of this structure must
be zero.</dd>
<dt><code>nitems_return</code></dt>
<dd>Returns the number of visuals returned. </dd>
</dl>
</blockquote>
The return value is the address of an array of all available visuals.<br>
<br>
An example of using XGetVisualInfo to get all available visuals follows:<br>
<br>
<div style="margin-left: 40px;"><code>XVisualInfo visTemplate, *results;</code><br>
<code>int numVisuals;</code><br>
<code>Display *dpy = XOpenDisplay(NULL);</code><br>
<code>visTemplate.screen = 0;</code><br>
<code>results = XGetVisualInfo(dpy, VisualScreenMask, &amp;visTemplate,
&amp;numVisuals);</code><br>
<code></code></div>
<br>
<h3>3.8.2 Querying Visual Attributes</h3>
<p>The GLX attributes of an X visual may be queried with the
glXGetConfig function:</p>
<blockquote>
<pre>int glXGetConfig(Display *dpy, XVisualInfo *vis, int attribute, int *value)<br></pre>
</blockquote>
<p>The parameters are as follows:</p>
<blockquote>
<dl>
<dt><code>dpy</code></dt>
<dd>The display handle, as returned by XOpenDisplay.</dd>
<dt><code>vis</code></dt>
<dd>The visual, as returned by glXChooseVisual.</dd>
<dt><code>attribute</code></dt>
<dd>The attribute to query. The attributes are listed below.</dd>
<dt><code>value</code></dt>
<dd>Pointer to an integer in which the result of the query will be
stored. </dd>
</dl>
</blockquote>
<p>The return value will be zero if no error occurs.<code>
&nbsp;GLX_INVALID_ATTRIBUTE</code> will be returned if the attribute
parameter is invalid.<code> &nbsp;GLX_BAD_VISUAL</code> will be returned
if the XVisualInfo parameter is invalid.</p>
<p>The following attributes may be queried:</p>
<blockquote>
<dl>
<dt><code>GLX_USE_GL</code></dt>
<dd>The result will be <code>True</code> or <code>False</code> to
indicate if OpenGL rendering is supported with the visual. Mini GLX
always return <code>True</code>.</dd>
<dt><code>GLX_RGBA</code></dt>
<dd>The result will be <code>True</code> for RGBA visuals or <code>False</code>
for color index visuals.</dd>
<dt><code>GLX_DOUBLEBUFFER</code></dt>
<dd>The result will be <code>True</code> if the visual has two
color buffers or <code>False</code> if the visual has one color buffer.</dd>
<dt><code>GLX_RED_SIZE</code></dt>
<dd>The result will be the number of red bits per pixel.</dd>
<dt><code>GLX_GREEN_SIZE</code></dt>
<dd>The result will be the number of green bits per pixel.</dd>
<dt><code>GLX_BLUE_SIZE</code></dt>
<dd>The result will be the number of blue bits per pixel.</dd>
<dt><code>GLX_ALPHA_SIZE</code></dt>
<dd>The result will be the number of alpha bits per pixel.</dd>
<dt><code>GLX_DEPTH_SIZE</code></dt>
<dd>The result will be the number of bits per Z value.</dd>
<dt><code>GLX_STENCIL_SIZE</code></dt>
<dd>The result will be the number of bits per stencil value.<br>
<br>
</dd>
</dl>
</blockquote>
<h3>3.8.3 Querying the Current Rendering Context</h3>
<p>The current rendering context can be queried with
glXGetCurrentContext: </p>
<blockquote>
<pre>GLXContext glXGetCurrentContext(void)<br></pre>
</blockquote>
<p>Zero will be returned if no context is currently bound.<br>
<br>
</p>
<h3>3.8.4 Querying the Current Drawable</h3>
<p>The current drawable (i.e. window or drawing surface) can be queried
with glXGetCurrentDrawable:</p>
<blockquote>
<pre>GLXDrawable glXGetCurrentDrawable(void)<br></pre>
</blockquote>
<p>Zero will be returned if no drawable is currently bound.<br>
<br>
</p>
<h3>3.8.5 Function Address Queries</h3>
<p>The glXGetProcAddress function will return the address of any
available OpenGL or Mini GLX function:</p>
<blockquote>
<pre>void *glXGetProcAddress(const GLubyte *procName)<br></pre>
</blockquote>
<p>If <code>procName</code> is a valid function name, a pointer to that
function will be returned. &nbsp;Otherwise, NULL will be returned.</p>
<p>The purpose of glXGetProcAddress is to facilitate using future
extensions to OpenGL or Mini GLX. If a future version of the library
adds new extension functions they'll be accessible via
glXGetProcAddress. The alternative is to hard-code calls to the new
functions in the application but doing so will prevent linking the
application with older versions of the library.<br>
<br>
</p>
<h2>3.9 Versioning</h2>
The Mini GLX version can be queried at run time with glXQueryVersion:
<blockquote>
<pre>Bool glXQueryVersion(Display *dpy, int *major, int *minor)<br></pre>
</blockquote>
<p><code>major</code> will be set to the major version number and<code>minor</code>
will be set to the minor version number.<code>True</code> will be
returned if the function succeeds. <code>False</code> will be returned
if the function fails due to invalid parameters. The <code>dpy</code>
argument is currently ignored, but should be the value returned by
XOpenDisplay.</p>
<p>At compile time, the Mini GLX interface version can be tested with
the MINI_GLX_VERSION_1_<i>x</i> preprocessor tokens. For example, if
version 1.0 of Mini GLX is supported, then<code> MINI_GLX_VERSION_1_0</code>
will be defined. If version 1.1 of Mini GLX is supported, then<code>
MINI_GLX_VERSION_1_1</code> will be defined.</p>
<p>At the time of writing the current Mini GLX version is 1.0.<br>
<br>
</p>
<h1>4.0 Interoperability with GLX and Xlib</h1>
While Mini GLX strives to be compatible with GLX and Xlib there are
some unavoidable differences which must be taken into consideration.<br>
<h2>4.1 Public vs Private Structures</h2>
The structure of many X data types is public. &nbsp;For example, the <code>Display</code>
data type is defined as a structure in /usr/include/X11/Xlib.h and
programmers may access any fields of that structure at will. &nbsp;Mini
GLX also defines a Display data type but its fields are hidden and not
visiblein <code>miniglx.h</code>. &nbsp;Duplicating the Xlib
declaration for the <code>Display</code> data type in minigl.h would
require defining a large number of other superfluous Xlib datatypes.<br>
<br>
Mini GLX users are discouraged from directly accessing the fields of
Xlib data types to maximize portability - though this is unavoidable to
some extent. &nbsp;For example, the <code>XVisualInfo</code> and <code>XSetWindowAtttributes</code>
data types must be completely public.
<h2>4.2 Macros</h2>
In some cases, Xlib defines macros which are meant to be used instead
of direct structure accesses. &nbsp;For example, the <code>RootWindow(dpy,
screen)</code> macro returns the root window for a given screen on a
given display. &nbsp;Unfortunately, macros do nothing to aid in ABI
compatibility since they are resolved at compile time instead of at
link/run time.<br>
<br>
Mini GLX also defines a <code>RootWindow</code> macro since it's
essential for creating windows. &nbsp;But the implementation of this
macro by Xlib and Mini GLX is completely different.<br>
<h2>4.3 Summary</h2>
Because Xlib and Mini GLX define data types and macros differently,
Mini GLX applications must be recompiled when retargeting Mini GLX or
native Xlib/GLX. &nbsp;That is, applications can't simply be re-linked
because of ABI incompatibilities.<br>
<br>
Nevertheless, the fact that Mini GLX programs can be recompiled for
Xlib and GLX increases portability and flexibility for testing and
prototyping.<br>
<br>
<h1>5.0 Example Program</h1>
<p>This section shows an example program which uses the Mini GLX
interface. The program simply draws several frames of a rotating square.<br>
</p>
<p>The program may be compiled for use with Xlib/GLX or Mini GLX by
setting the <code>USE_MINIGLX</code> token to 0 or 1, respectively.
&nbsp;Note that the only difference is the header files which are
included.<br>
</p>
<p> </p>
<pre><code><br></code>#define USE_MINIGLX 1 /* 1 = use Mini GLX, 0 = use Xlib/GLX */<br><br>#include &lt;stdio.h&gt;<br>#include &lt;stdlib.h&gt;<br>#include &lt;GL/gl.h&gt;<br><br>#if USE_MINIGLX<br>#include &lt;GL/miniglx.h&gt;<br>#else<br>#include &lt;GL/glx.h&gt;<br>#include &lt;X11/Xlib.h&gt;<br>#endif<br><br><code>/*<br> * Create a simple double-buffered RGBA window.<br> */<br>static Window<br>MakeWindow(Display * dpy, unsigned int width, unsigned int height)<br>{<br> int visAttributes[] = {<br> GLX_RGBA,<br> GLX_RED_SIZE, 1,<br> GLX_GREEN_SIZE, 1,<br> GLX_BLUE_SIZE, 1,<br> GLX_DOUBLEBUFFER,<br> None<br> };<br> XSetWindowAttributes attr;<br> unsigned long attrMask;<br> Window root;<br> Window win;<br> GLXContext ctx;<br> XVisualInfo *visinfo;<br><br> root = RootWindow(dpy, 0);<br><br> /* Choose GLX visual / pixel format */<br> visinfo = glXChooseVisual(dpy, 0, visAttributes);<br> if (!visinfo) {<br> printf("Error: couldn't get an RGB, Double-buffered visual\n");<br> exit(1);<br> }<br><br> /* Create the window */<br> attr.background_pixel = 0;<br> attr.border_pixel = 0;<br> attr.colormap = XCreateColormap(dpy, root, visinfo-&gt;visual, AllocNone);<br> attrMask = CWBackPixel | CWBorderPixel | CWColormap;<br> win = XCreateWindow(dpy, root, 0, 0, width, height,<br> 0, visinfo-&gt;depth, InputOutput,<br> visinfo-&gt;visual, attrMask, &amp;attr);<br> if (!win) {<br> printf("Error: XCreateWindow failed\n");<br> exit(1);<br> }<br><br> /* Display the window */<br> XMapWindow(dpy, win);<br><br> /* Create GLX rendering context */<br> ctx = glXCreateContext(dpy, visinfo, NULL, True);<br> if (!ctx) {<br> printf("Error: glXCreateContext failed\n");<br> exit(1);<br> }<br><br> /* Bind the rendering context and window */<br> glXMakeCurrent(dpy, win, ctx);<br><br> return win;<br>}<br><br><br>/*<br> * Draw a few frames of a rotating square.<br> */<br>static void<br>DrawFrames(Display * dpy, Window win)<br>{<br> int angle;<br> glShadeModel(GL_FLAT);<br> glClearColor(0.5, 0.5, 0.5, 1.0);<br> for (angle = 0; angle &lt; 360; angle += 10) {<br> glClear(GL_COLOR_BUFFER_BIT);<br> glColor3f(1.0, 1.0, 0.0);<br> glPushMatrix();<br> glRotatef(angle, 0, 0, 1);<br> glRectf(-0.8, -0.8, 0.8, 0.8);<br> glPopMatrix();<br> glXSwapBuffers(dpy, win);<br> }<br>}<br><br><br>int<br>main(int argc, char *argv[])<br>{<br> Display *dpy;<br> Window win;<br><br> dpy = XOpenDisplay(NULL);<br> if (!dpy) {<br> printf("Error: XOpenDisplay failed\n");<br> return 1;<br> }<br><br> win = MakeWindow(dpy, 300, 300);<br><br> DrawFrames(dpy, win);<br><br> return 0;<br>}<br></code></pre>
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3Dfx Glide device driver
Mesa-5.1 release notes:
-----------------------
1) Glide2 support has been ceased; in order to keep Voodoo Graphics
and Voodoo Rush compatibility, please visit the Glide SourceForge
and help us to fix Glide3 for those cards.
2) The current release is a WIP; among other things, the Linux build works
only to some extent. Any help will be appreciated.
3) Glide3 can be found at http://sourceforge.net/projects/glide/
Known supported HW/OS:
----------------------
Voodoo^2, Voodoo Banshee, Voodoo3, Voodoo4, Voodoo5
DOS (DJGPP), Windows9x/2k (MinGW/MSVC), Linux
How to compile:
---------------
DJGPP/MinGW/MSVC:
Place the Glide3 SDK in the top Mesa directory:
$(MESA)/glide3/include/*.h
$(MESA)/glide3/lib/
Required headers:
3dfx.h, g3ext.h, glide.h, glidesys.h, glideutl.h, sst1vid.h
Required libraries:
OS specific
Type:
make -f Makefile.DJ HAVE_MMX=1 HAVE_3DNOW=1 FX=1
or
make -f Makefile.mgw HAVE_MMX=1 HAVE_3DNOW=1 FX=1
or
nmake -f Makefile.wfx
Look into the corresponding makefiles for further information.
Linux:
Place the Glide3 SDK in /usr/local/glide
Type:
make linux-glide
Contact:
--------
Daniel Borca <dborca@users.sourceforge.net>
Hiroshi Morii <koolsmoky@users.sourceforge.net>
The info below this line is outdated. You have been warned...
*************************************************************
Info for Mesa 4.1
-----------------
The 3dfx Glide driver in Mesa is disabled by default. Not too many people
use this driver anymore and at some point down the road it will be dropped.
To use/enable the Glide driver either do this:
'./configure --with-glide=DIR' Where DIR is the location of Glide, like
/usr/ or /usr/local
OR
'make linux-x86-glide' If using the old-style Makefile system.
The rest of this file hasn't changed since Mesa 3.3. Some of it's out of
date, but some is still valid.
What do you need ?
------------------
- A PC with a 3Dfx Voodoo1/2 Graphics or Voodoo Rush based board
(Pure3D, Monster 3D, R3D, Obsidian, Stingray 128/3D, etc.).
The Quantum3D Obsidian3D-2 X-24 requires some special env. setting
under Linux (more information in the "Useful Glide Environment
Variables");
- The 3Dfx Glide library 2.3 or later for your OS (the 2.4 works fine).
The Voodoo2 requires the Glide library 2.51. The Glide 3.1 is not
compatible with the Glide 2.x so it doesn't work with the current
version of the driver;
- A compiler supported by the Glide library (Micro$oft VC++ (tested),
Watcom (tested), GCC for Linux (tested), etc.);
- It's nice to have two monitors - one for your normal graphics
card and one for your 3Dfx card. If something goes wrong with
an application using the 3Dfx hardware you can still see your
normal screen in order to recover.
Tested on:
----------
Windows 95 - David Bucciarelli
Windows NT - Henri Fousse
MS-DOS
Linux - Daryll Strauss, Brian Paul, David Bucciarelli
FreeBSD
BeOS - Duncan Wilcox
MacOS - Fazekas Miklos
What is able to do ?
--------------------
- It is able accelerate points, lines and polygon with flat
shading, gouraud shading, Z-buffer, texture mapping, blending, fog and
antialiasing (when possible). There is also the support for rendering
in a window with a slow trick for the Voodoo Graphics (available only
for Linux) and at full speed with the Voodoo Rush chipset.
Under Linux is also possible to switch on-the-fly between the fullscreen
and in-window rendering hack.
There is also the support for using more than one Voodoo Graphics in the
some application/PC (you can create one context for each board and use
multiple video outputs for driving monitors, videoprojectors or HMDs).
The driver is able to fallback to pure software rendering when afeature
isn't supported by the Voodoo hardware (however software rendering is
very slow compared to hardware supported rendering)
How to compile:
---------------
Linux:
------
Here are the basic steps for using the 3Dfx hardware with Mesa
on Linux:
- You'll need the Glide library and headers. Mesa expects:
/usr/local/glide/include/*.h // all the Glide headers
/usr/local/glide/lib/libglide2x.so
If your Glide libraries and headers are in a different directory
you'll have to modify the Mesa-config and mklib.glide files.
- Unpack the MesaLib-3.1.tar.gz and MesaDemos-3.1.tar.gz archives;
- If you're going to use a newer Mesa/Glide driver than v0.27 then
unpack the new driver archive over the Mesa directory.
- In the Mesa-3.1 directory type "make linux-glide"
- Compilation _should_ finish without errors;
- Set your LD_LIBRARY_PATH environment variable so that the
libglide2x.so and Mesa library files can be found. For example:
setenv LD_LIBRARY_PATH "/usr/local/glide/lib:/SOMEDIR/Mesa-3.1/lib"
- You'll have to run Glide-based programs as root or set the suid
bit on executables;
- Try a demo:
cd gdemos
su
setenv MESA_GLX_FX f
./gears (hit ESC to exit)
- You can find the demos especially designed for the Voodoo driver in
in the Mesa-3.1/3Dfx/demos directory (type "make" in order to compile
everything).
MacOS:
------
Check the WEB page at http://valerie.inf.elte.hu/~boga/Mesa.html
MS Windows:
-----------
For the MSVC++:
- The glide2x.lib have to be in the default MSVC++ lib directory;
- The Glide headers have to be in the default MSVC++ include directory;
- You must have the vcvars32.bat script in your PATH;
- Go to the directory Mesa-3.1 and run the mesafx.bat;
- The script will compile everything (Mesa-3.1/lib/OpenGL32.{lib,dll},
Mesa-3.1/lib/GLU32.{lib,dll}, Mesa-3.1/lib/GLUT32.{lib,dll} and
Voodoo demos);
- At the end, you will be in the Mesa-3.1/3Dfx/demos directory;
- Try some demo (fire.exe, teapot.exe, etc.) in order to check if
everything is OK (you can use Alt-Tab or Ctrl-F9 to switch between
the Voodoo screen and the windows desktop);
- Remember to copy the Mesa OpenGL32.dll, GLU32.dll and GLUT32.dll in the
some directory were you run your Mesa based applications.
- I think that you can easy change the Makefile.fx files in order
to work with other kind of compilers;
- To discover how open the 3Dfx screen, read the sources under
the Mesa-3.1/3Dfx/demos directory. You can use the GLUT library or
the Diego Picciani's wgl emulator.
NOTE: the MSVC++ 5.0 optimizer is really buggy. Also if you install the
SP3, you could have some problem (you can disable optimization in order
solve these kind of problems).
Doing more with Mesa & Linux Glide:
-----------------------------------
The MESA_GLX_FX environment variable can be used to coax most
GLX-based programs into using Glide (and the __GLUT library
is GLX-based__).
Full-screen 3Dfx rendering:
---------------------------
1. Set the MESA_GLX_FX variable to "fullscreen":
ksh:
export MESA_GLX_FX = "fullscreen"
csh:
setenv MESA_GLX_FX fullscreen
2. As root, run a GLX-based program (any GLUT demo on Linux).
3. Be careful: once the 3Dfx screen appears you won't be able
to see the GLUT windows on your X display. This can make using
the mouse tricky! One solution is to hook up your 3Dfx card to
a second monitor. If you can do this then set these env vars
first:
setenv SST_VGA_PASS 1
setenv SST_NOSHUTDOWN
or for the Voodoo2:
setenv SSTV2_VGA_PASS 1
setenv SSTV2_NOSHUTDOWN
Rendering into an X window with the help of the Voodoo hardware:
----------------------------------------------------------------
1. Start your X server in 16 bpp mode (XFree86: startx -- -bpp 16)
in order to have the best performance and the best visual
quality. However you can use any visual depth supported by X.
2. Set the following environment variables:
export MESA_GLX_FX="window" # to enable window rendering
export SST_VGA_PASS=1 # to stop video signal switching
export SST_NOSHUTDOWN=1 # to stop video signal switching
OR
setenv MESA_GLX_FX window
setenv SST_VGA_PASS 1
setenv SST_NOSHUTDOWN 1
(the Voodoo2 requires to use "SSTV2_" instead "SST_").
3. As root, try running a GLX-based program
How does it work? We use the 3Dfx hardware to do rendering then
copy the image from the 3Dfx frame buffer into an X window when
the SwapBuffers() function is called. The problem with this
idea is it's slow. The image must be copied from the 3Dfx frame
buffer to main memory then copied into the X window (and when the X
visual depth doesn't match the Voodoo framebufffer bit per pixel, it
is required also a pixel format translation).
NOTE: the in-window rendering feature only works with double-buffering.
On the fly switching between in window rendering and full screen rendering
--------------------------------------------------------------------------
The Mesa 2.6 has introduced the capability of switching
on-the-fly between the fullscreen/fullspeed rendering and the in-window
hack and vice versa. The on-the-fly switching requires a direct support
by the application but it is really easy to add. You have to start
your X server in 16 bpp mode and to add the following lines to your
application:
#if defined(FX) && define(XMESA)
#include <GL/xmesa.h>
static int fullscreen=1;
#endif
...
/* In the GLUT keyboard event callback */
#if defined(FX) && !define(WIN32)
case ' ':
fullscreen=(!fullscreen);
XMesaSetFXmode(fullscreen ? XMESA_FX_FULLSCREEN : XMESA_FX_WINDOW);
break;
#endif
...
See the 3Dfx/demos/tunnel.c program
for an example. You have to set the -DXMESA flag in the Makefile's COPTS
to enable it.
Rendering into an X window with the X11 software driver:
--------------------------------------------------------
Set the MESA_GLX_FX variable to "disable" your GLX-based program will use
the X11 software driver (the 3Dfx hardware isn't used at all).
Useful Glide Environment Variables:
-----------------------------------
- To disable the 3Dfx logo, set the FX_GLIDE_NO_SPLASH variable.
- To disable video signal switching:
setenv SST_VGA_PASS 1
setenv SST_NOSHUTDOWN
or for the Voodoo2:
setenv SSTV2_VGA_PASS 1
setenv SSTV2_NOSHUTDOWN
- To set the default screen refresh rate:
setenv SST_SCREENREFRESH=75
the supported values are 60, 70, 72, 75, 80, 85, 90, 100, 120.
- To force the Mesa library to swap buffers as fast as possible,
without any vertical blanking synchronization (useful for benchmarks):
setenv FX_GLIDE_SWAPINTERVAL 0
setenv SST_SWAP_EN_WAIT_ON_VIDSYNC 0
- You can slight improve the performances of your Voodoo1 board with
the following env. var.:
setenv SST_FASTMEM 1
setenv SST_PCIRD 1
setenv SST_GRXCLK 57
(don't use this setting with the Quantum3D 100SB or with any other
SLI configuration: it will hang everything !).
The following setting can be used with the Voodoo2:
setenv SSTV2_FASTMEM_RAS_READS=1
setenv SSTV2_FASTPCIRD=1
setenv SSTV2_GRXCLK=95
- The Quantum3D Obsidian3D-2 X-24 requires some special env. setting
in order to work under Linux:
export SSTV2_FT_CLKDEL=5
export SSTV2_TF0_CLKDEL=7
export SSTV2_TF1_CLKDEL=7
export SSTV2_TF2_CLKDEL=7
export SSTV2_SLIM_VIN_CLKDEL=3
export SSTV2_SLIM_VOUT_CLKDEL=2
export SSTV2_SLIS_VIN_CLKDEL=3
export SSTV2_SLIS_VOUT_CLKDEL=2
(Thanks to Phil Ross for this trick).
The Mesa/Voodoo Environment Variables:
--------------------------------------
- Only for Windows/Voodoo Rush users, if you define the
env. var. MESA_WGL_FX:
export MESA_WGL_FX=fullscreen
you will get fullscreen rendering;
- Only for Windows/Voodoo Rush users, if you define the
env. var. MESA_WGL_FX:
export MESA_WGL_FX=window
you will get window rendering (default value);
- Only for Linux users, you can find more informations about
the env. var. MESA_GLX_FX in the "Doing more with Mesa & Linux Glide"
section;
- If you define the env. var. MESA_FX_SWAP_PENDING:
export MESA_FX_SWAP_PENDING=4
you will able to set the maximum number of swapbuffers
commands in the Voodoo FIFO after a swapbuffer (default value: 2);
- If you define the env. var. MESA_FX_INFO:
export MESA_FX_INFO=1
you will get some useful statistic.
- If you define the env. var. MESA_FX_NO_SIGNALS:
export MESA_FX_NO_SIGNALS=1
Mesa/FX will not install atexit() or signal() handlers.
Know BUGS and Problems:
-----------------------
- fog doesn't work in the right way when using the glDepthRange() function;
- Maximum texture size: 256x256 (this is an hardware limit);
- Texture border aren't yet supported;
- A GL_BLEND in a glTexEnv() is not supported (it is an hardware limit);
- Use the glBindTexture extension (standard in OpenGL 1.1) for texture
mapping (the old way: glTexImage inside a display list, download
the texture map each time that you call the display list !!!);
- Stencil buffer and Accumulation buffer are emulated in software (they are not
directly supported by the Hardware);
- Color index mode not implemented (this is an hardware limit);
- Thre is an know bug in the Linux Glide library so the in-window-rendering hack
and any other operations that requires to read the Voodoo frame buffer
(like the accumulation buffer support) doesn't work on Voodoo SLI cards.
- The driver switch to pure software (_slow_) rendering when:
- Stencil enabled;
- Using the Accumulation buffer;
- Blend enabled and blend equation != GL_FUNC_ADD_EXT;
- Color logic operation enabled and color logic operation != GL_COPY;
- Using GL_SEPARATE_SPECULAR_COLOR;
- The four values of glColorMask() aren't the some;
- Texture 1D or 3D enabled;
- Texture function is GL_BLEND;
- Using the Multitexture extension with Voodoo cards with only one TMU;
- Using the Multitexture extension with Voodoo cards with more than
one TMU, and texture function isn't GL_MODULATE;
- Point size is != 1.0 or point params vector != (1.0,0.0,0.0);
- Line width != 1.0 or using stipple lines.
- Using polygon offset or stipple polygons;
NOTE: this is list is not yet complete.
Hints and Special Features:
---------------------------
- Under Linux and with a Voodoo Graphics board, you can use
XMesaSetFXmode(XMESA_FX_FULLSCREEN or XMESA_FX_WINDOW) in order to
switch on the fly between fullscreen rendering and the in-window-rendering
hack.
- The driver is able to use all the texture memory available: 2/4MB on
Voodoo1 boards and 8MB (!) on high-end Voodoo1 and Voodoo2 boards.
- Trilinear filtering is fully supported on Voodoo boards with two TMUs
(high-end Voodoo1 boards and Voodoo2 boards). When only one TMU is
available the driver fallback to bilinear filter also if you ask
for trilinear filtering.
- The Voodoo driver support multiple Voodoo Graphics boards in the
some PC. Using this feature, you can write applications that use
multiple monitors, videoprojectors or HMDs for the output. See
Mesa-3.1/3Dfx/demos/tunnel2.c for an example of how setup one
context for each board.
- The v0.19 introduces a new powerful texture memory manager: the
texture memory is used as a cache of the set of all defined texture
maps. You can now define several MBs of texture maps also with a 2MB
of texture memory (the texture memory manager will do automatically
all the swap out/swap in
texture memory work). The new texture memory manager has also
solved a lot of other bugs/no specs compliance/problems
related to the texture memory usage.
- Use triangles and quads strip: they are a LOT faster than sparse
triangles and quads.
- The Voodoo driver supports the GL_EXT_paletted_texture. it works
only with GL_COLOR_INDEX8_EXT, GL_RGBA palettes and the alpha value
is ignored because this is a limitation of the the current Glide
version and of the Voodoo hardware. See Mesa-3.1/3Dfx/demos/paltex.c for
a demo of this extension.
- The Voodoo driver directly supports 3Dfx Global Palette extension.
It was written for GLQuake and I think that it isn't a good idea
to use this extension for any other purpose (it is a trick). See
Mesa-3.1/3Dfx/demos/glbpaltex.c for a demo of this extension.
- The Voodoo driver chooses the screen resolution according to the
requested window size. If you open a 640x480 window, you will get
a 640x480 screen resolution, if you open a 800x600 window, you
will get a 800x600 screen resolution, etc.
Most GLUT demos support the '-geometry' option, so you can choose
the screen resolution: 'tunnel -geometry 800x600'.
Clearly, you Voodoo board must have enough framebuffer RAM (otherwise
the window creation will fail).
- The glGetString(GL_RENDERER) returns more information
about the hardware configuration: "Mesa Glide <version>
<Voodoo_Graphics|Voodoo_Rush|UNKNOWN> <num> CARD/<num> FB/
<num> TM/<num> TMU/<NOSLI|SLI>"
where: <num> CARD is the card used for the current context,
<num> FB is the number of MB for the framebuffer,
<num> TM is the number of MB for the texture memory,
<num> TMU is the number of TMU. You can try to run
Mesa/demos/glinfo in order to have an example of the output.
Did you find a lot BUGs and problems ? Good, send me an email.
FAQ:
----
For a complete FAQ check the Bernd Kreimeier's Linux 3Dfx HOWTO
available at http://www.gamers.org/dEngine/xf3D (it includes also
a lot of informations not strictly related to Linux, so it can be
useful also if you don't use Linux)
1. What is 3Dfx?
3Dfx Interactive, Inc. is the company which builds the VooDoo 3-D graphics
chipset (and others) used in popular PC cards such as the Diamond Monster 3D
and the Orchid Righteous 3D (more informations at http://www.3dfx.com).
2. What is Glide?
Glide is a "thin" programming interface for the 3Dfx hardware. It was
originally written for Windows/Intel but has been ported to Linux/Intel
by Daryll Strauss.
3Dfx, Inc. should be applauded for allowing the Linux version of Glide
to be written.
You can directly program with the Glide library if you wish. You can
obtain Glide from the "Developer" section of the 3Dfx website: www.3dfx.com
There's a Linux/Glide newsgroup at news://news.3dfx.com/3dfx.glide.linux
3. What is fxmesa?
"fxmesa" is the name of the Mesa device driver for the 3Dfx Glide library.
It was written by David Bucciarelli and others. It works on both Linux
and Windows. Basically, it allows you to write and run OpenGL-style programs
on the 3Dfx hardware.
4. What is GLQuake?
Quake is a very popular game from id software, Inc. See www.idsoftware.com
GLQuake is a version of Quake written for OpenGL. There is now a Linux
version of GLQuake with works with the Mesa/3Dfx/Glide combo.
Here's what you need to run GLQuake on Linux:
PC with 100MHz Pentium or better
a 3Dfx-based card
Mesa 3.1 libraries: libMesaGL.so libMesaGLU.so
Glide 2.4 libraries: libglide2x.so libtexus.so
GLQuake for Linux.
Also, the windows version of GLQuake works fine with the Mesa OpenGL32.dll,
you have only to copy the Mesa-3.1/lib/OpenGL32.dll in the GLQuake directory
in order to test 'MesaQuake'.
5. What is GLUT?
GLUT is Mark Kilgard's OpenGL Utility Toolkit. It provides an API for
writing portable OpenGL programs with support for multiple windows, pop-
up menus, event handling, etc.
Check the Mark's home page for more informations (http://reality.sgi.com/mjk_asd).
Every OpenGL programmer should check out GLUT.
GLUT on Linux uses GLX.
6. What is GLX?
GLX is the OpenGL extension to the X Window System. I defines both a
programming API (glX*() functions) and a network protocol. Mesa implements
an emulation of GLX on Linux. A real GLX implementation would requires
hooks into the X server. The 3Dfx hardware can be used with GLX-based
programs via the MESA_GLX_FX environment variable.
7. Is the Voodoo driver able to use the 4Mb texture memory of
the Pure3D boards ?
Yes, the Voodoo driver v0.20 includes the support for Voodoo
Graphics boards with more than 2Mb of texture memory.
8. Do the Voodoo driver support the Voodoo Rush under Windows ?
Yes, Diego Picciani has developed the support for the Voodoo
Rush but David Bucciarelli has a Pure3D and a Monster3D and Brian Paul
has a Monster3D, so the new versions of the Mesa/Voodoo sometime are
not tested with the Voodoo Rush.
9. Do the Voodoo driver support the Voodoo Rush under Linux ?
No because the Linux Glide doesn't (yet) support the Voodoo Rush.
10. Can I sell my Mesa/Voodoo based software and include
a binary copy of the Mesa in order to make the software
working out of the box ?
Yes.
11. Which is the best make target for compiling the Mesa for
Linux GLQuake ('make linux-glide', 'make linux-386-glide', etc.) ?
'make linux-386-opt-glide' for Voodoo1 and 'make linux-386-opt-V2-glide'
for Voodoo2 boards because it doesn't include the '-fPIC'
option (4-5% faster).
12. Can I use a Mesa compiled with a 'make linux-386-opt-V2-glide'
for my applications/programs/demos ?
Yes, there is only one constrain: you can't run two Mesa applications
at the some time. This isn't a big issue with the today Voodoo Graphics.
Thanks to:
----------
Henri Fousse (he has written several parts of the v0.15 and the old GLUT
emulator for Win);
Diego Picciani (he has developed all the Voodoo Rush support and the wgl
emulator);
Daryll Strauss (for the Linux Glide and the first Linux support);
Brian Paul (of course);
Dave 'Zoid' Kirsch (for the Linux GLQuake and Linux Quake2test/Q2 ports)
Bernd Kreimeier (for the Linux 3Dfx HOWTO and for pushing companies to offer
a better Linux support)
3Dfx and Quantum3D (for actively supporting Linux)
The most update places where find Mesa VooDoo driver related informations are
the Mesa mailing list and my driver WEB page
(http://www-hmw.caribel.pisa.it/fxmesa/index.shtml)
David Bucciarelli (davibu@tin.it)
Humanware s.r.l.
Via XXIV Maggio 62
Pisa, Italy
Tel./Fax +39-50-554108
email: info.hmw@plus.it
www: www-hmw.caribel.pisa.it

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AMIGA AMIWIN PORT of MESA: THE OPENGL SOFTWARE EMULATION
========================================================
Port by Victor Ng-Thow-Hing (victorng@dgp.toronto.edu)
Original Author (Brian Paul (brianp@ssec.wisc.edu)
Dec.1 , 1995: Port of release Mesa 1.2.5
- Modifications made to minimize changes to Mesa distribution.
Nov.25, 1995: Port of release Mesa 1.2.4
HISTORY
=======
As a 3D graphics progammer, I was increasingly frustrated to see OpenGL
appearing on so many platforms EXCEPT the Amiga. Up to now, the task
of porting OpenGL directly from native Amiga drawing routines seemed like
a daunting task. However, two important events made this port possible.
First of all, Brian Paul wrote Mesa, the OpenGL software emulator that
can be found on many platforms - except the Amiga and Atari (who cares
about the latter!). This was pretty ironic considering that Mesa was
originally prototyped on an Amiga! The second great event was when
Holger Kruse developed AmiWin, the X11R6 server for the Amiga (definitely
register for this great piece of software) and released a development kit
so one could compile X programs with SAS/C.
Since Mesa had X routines as its primitive drawing operations, this made
a marriage of Mesa and Amiwin feasible. I copied over the sources from
an ftp site, played with the code, wrote some Smakefiles, and voila,
I had OpenGL programs displaying on my Amiga.
Although the speed is nothing to be impressed about, this port can be
potentially useful to those who want to quickly test their code in
wireframe or perhaps learn more about programming with the OpenGL API.
I hope Amiga developers will continue to write excellent software for
their machine, especially more X clients for Amiwin. If you have any
solutions so some of my problems in the porting notes, please send me
some email!
See you around,
Vic.
HOW TO CREATE THE LIBRARIES AND SAMPLE CODE
===========================================
Just run the shell script mklib.amiwin in the mesa directory. This will
make all the libraries and copy them into the mesa/lib directory. If you
don't want to compile everything, just go to the desired directory and
type smake in that directory.
Change any of the variables in the smakefiles as necessary. You will REQUIRE
the Amiwin development kit to compile these libraries since you need X11.LIB
and the shareable X libraries. Some examples require the AmiTCP4.0
net.lib static link library and related header files for unix related
header files and functions like sleep().
HOW TO USE THE MESA LIBRARIES
=============================
Study the Smakefiles in the demos, samples and book directories for the
proper SAS/C options and linkable libraries to use. Basically aux calls
require Mesaaux.LIB, gl calls require MesaGL.LIB, glu calls MesaGLU.LIB,
tk calls Mesatk.LIB. There is a preliminary port of MesaGLUT.LIB toolkit
available in the lib directory with the other Mesa libraries. However,
it seems to cause crashes on some of the sample code. Someone else may want
to attempt a more stable port.
PORTING NOTES TO AMIWIN
=======================
My strategy of porting was to leave as much of the code untouched as
possible. I surrounded any amiga specific changes with
#ifdef AMIWIN ... #endif or #ifndef AMIWIN ... #endif preprocessor
symbols. The code was ported on an Amiga 2000, with Fusion 40 accelerator
and a Picasso II graphics card. The SAS/C 6.56 compiler was used, with
the AmiWin 2.16 X development kit.
All compilations were done for a 68040 CPU with 68882 math coprocessor for
maximum speed. Please edit the smakefile for other compilers.
I wrote smakefiles for the directories I ported. I omitted the Windows
and Widgets directories. The former is for MS Windows and the latter
requires Motif, which is not easily available for the Amiga.
Here are the changes I did per directory:
* mesa
Nov. 25, 1995 v 1.2.4
- added a mklib.amiwin shell script that will make all the libraries and
sample code for Mesa
- created this readme file: readme.AMIGA
* mesa/include
Dec. 1, 1995 v 1.2.5
- added the following to GL/xmesa.h
#ifdef AMIWIN
#include <pragmas/xlib_pragmas.h>
extern struct Library *XLibBase;
#endif
NET CHANGE: xmesa.h
* mesa/src
Nov. 25, 1995 v 1.2.4
- added the necessary pragma calls for X functions to the following:
xmesa1.c, xmesa2.c, xmesa3.c, xfonts.c, glx.c
This prevents undefined symbols errors during the linking phase for
X library calls
- created smakefile
Dec. 1, 1995 v 1.2.5
- removed AMIWIN includes from xmesa1.c, xmesa2.c, xmesa3.c, xfonts.c,
glx.c since they are now defined in include/GL/xmesa.h
NET CHANGE: smakefile
* mesa/src-tk
Nov. 25, 1995 v 1.2.4
- added the necessary pragma calls for X functions to the following:
private.h
- created smakefile
Dec. 1, 1995 v 1.2.5
- removed AMIWIN includes from private.h since it is now defined in
include/GL/xmesa.h
NET CHANGE: smakefile
* mesa/src-glu
Nov. 25, 1995 v 1.2.4
- created smakefile
NET CHANGE: smakefile
* mesa/src-aux
Nov. 25, 1995 v 1.2.4
- added the necessary pragma calls for X functions to the following:
glaux.c
- created smakefile
NET CHANGE: glaux.c, smakefile
* mesa/demos
Nov. 25, 1995 v 1.2.4
- added the necessary pragma calls for X functions to the following:
xdemo.c, glxdemo.c, offset.c
- created smakefile
- put #ifndef AMIWIN ... #endif around sleep() calls in xdemo.c since
they are not part of AmigaDOS.
Dec. 1, 1995 v 1.2.5
- removed AMIWIN defines from xdemo.c, glxdemo.c, offset.c since
already defined in include/GL/xmesa.h
- modified Smakefile to include header and includes from the AmiTCP4.0
net.lib linkable library to provide unix-compatible sys/time.h and
the sleep() function
- removed AMIWIN defines in xdemo.c since sleep() now defined
NET CHANGE: smakefile
* mesa/samples
Nov. 25, 1995 v 1.2.4
- added the necessary pragma calls for X functions to the following:
oglinfo.c
- created smakefile
- put #ifndef AMIWIN ... #endif around sleep() in blendxor.c
- removed olympic from smakefile targets since <sys/time.h> not defined
Dec. 1, 1995 v 1.2.5
- removed AMIWIN defines from oglinfo.c, since already defined in
include/GL/xmesa.h
- modified Smakefile to include header and includes from the AmiTCP4.0
net.lib linkable library to provide unix-compatible sys/time.h and
the sleep() function
- removed AMIWIN defines in blendxor.c for sleep()
- added AMIWIN defines around _MACHTEN_ in olympic.c since xrandom()
functions are not defined in any libraries
- added olympic back into the Smakefile targets
NET CHANGE: smakefile, olympic.c
* mesa/book
Nov. 25, 1995 v 1.2.4
- created smakefile
- removed accpersp and dof from smakefile targets since the SAS/C compile seems to
confuse the near,far variables with near/far memory models.
NET CHANGE: smakefile
* mesa/windows
Dec. 1, 1995 v 1.2.5
- Removed directory to save space since this is only needed for Windows based
machines.

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Mesa / BeOS Information
* Introduction
Mesa 4.1 features a driver for the BeOS. The driver implements
a clone of the BGLView class. This class, derived from BView, allows
OpenGL rendering into a BeOS window.
The 4.1 BeOS driver is an update of Brian Paul's BeOS driver released in Mesa 3.1.
Any application which uses the BGLView should be able to use Mesa
instead of Be's OpenGL without changing any code.
Since Be's OpenGL implementation (as of R5) is basically just the
SGI sample implementation, it's pretty slow. You'll see that Mesa
is considerably faster.
* Source Code
The source code for the driver is in Mesa-4.1/src/BeOS/ directory.
It's not 100% finished at this time but many GLUT-based demos are
working. No optimizations have been made at this time.
* Compiling
Requirements:
- gcc version 2.95.3 for BeOS
You can find it here: http://www.bebits.com/app/2157
Move to the Mesa-4.x src sub-directory and then type "make -f Makefile.BeOS-R5".
When it finishes the Mesa based libGL.so library for
BeOS will be in the Mesa-4.x/src/obj.{x86|ppc}/ directory.
To install it as Be's default libGL.so replacement, put it in your
/boot/home/config/lib/ directory. All your GL/GLUTapps will use
the Mesa based then.
By default, it build a non-debug version library.
The x86 (MMX, SSE and 3DNOW) optimizations are also supported for x86 target.
Sorry, Mesa don't have ppc (Altivec) optimizations yet.
* Example Programs
Look in the Mesa-4.x/BeOS/ directory for one or two BGLView demo
programs. They should have been compiled along with the Mesa
library.
* GLUT
A beta version of GLUT 3.7 port for BeOS can be found at
http://anobject.com/jehamby/Code/Glut-3.7-x86.zip.
There's is a 2.5 version in src-glut.beos/, too.
The original distribution can be obtained from
http://home.beoscentral.com/jehamby/Glut-3.5-x86.zip
They are special version of GLUT adapted for the BeOS. I don't
believe Mark Kilgard's normal GLUT distribution includes BeOS
support.
* Special Features
Mesa's implementation of the BGLView class has an extra member
function: CopySubBufferMESA(). It basically works like SwapBuffers()
but it only copies a sub region from the back buffer to the front
buffer. This is a useful optimization for some applications.
If you use this method in your code be sure that you check at runtime
that you're actually using Mesa (with glGetString) so you don't
cause a fatal error when running with Be's OpenGL.
* Work Left To Do
BDirectWindow single buffering support is not implemented yet.
Color index mode is not implemented yet.
Reading pixels from the front buffer not implemented yet.
There is also a BGLScreen class in BeOS for full-screen OpenGL
rendering. This should also be implemented for Mesa.
* Old BeOS Driver
Mesa 2.6 had an earlier BeOS driver. It was based on Mesa's Off-screen
rendering interface, not BGLView. If you're interested in the older
driver you should get Mesa 2.6.
* BeOS and Glide
Mesa 3.0 supported the 3Dfx/Glide library on Beos. Download Mesa 3.0
if interested. Ideally, the 3Dfx/Glide support should be updated to
work with the new Mesa 3.1 BGLView implementation.
The Glide library hasn't been updated for BeOS R4, to my knowledge, as
of February, 1999.
----------------------------------------------------------------------
$Id: README.BEOS,v 1.7 2002/09/19 16:19:44 brianp Exp $

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DirectX 6 Driver for Mesa 3.0
This software is distributed under the terms of the GNU Library
General Public License, see the LICENSE file for details.
What do you need ?
------------------
- A PC with a DirectX 6 video driver installed.
- Mesa 3.0
- The 3Dfx Glide library 2.3 or later for your OS (the 2.4 works fine).
The Voodoo2 requires the Glide library 2.51. The Glide 3.0 is not
compatible with the Glide 2.x so it doesn't work with the current
version of the driver;
- Visual C++ 5.0 is only compiler test but others should be ok with
changes to the makefiles (CFLAGS/LFLAGS).
- DirectX 6 SDK (was a MS download but not sure if still available).
- SoftIce or another debugger that will get DPF's is nice.
Tested on:
----------
Windows 95
Windows 98
Windows NT 5.0 (beta 2)
What is able to do ?
--------------------
- the driver will try and use DirectX to rasterize the OpenGL primitives
that are sent to the driver. The driver will fall back to SW if the rendering
context is too big. The fallback to SW still uses DirectDraw. If the driver
fails to support and operation (accum, stencil, etc) then it will try and get
Mesa to render it in SW. DirectX 6 features that are unsupported by the
installed DirectX 6 driver will be mapped to some other best fit feature.
How to compile:
---------------
These instructions assume you have Visual C++ installed.
You might need to increase you enviroment space. You can do this by
adding the following statement to you config.sys.
shell=C:\COMMAND.COM C:\ /p /e:8198
Next setup you compiler enviroment by running vcvars32.bat in the Visual C++
'bin' directoy.
c:\DevStudio\VC\bin\vcvars32.bat
Modify the D3D makefile to point at your SDK install. Example has the SDK
installed on my 'f' drive in the root.
file: \Mesa-3.0\src\makefile.d3d
SDKROOT=f:\mssdk
Now you can simply make the project. If you look in the makefile you can see
I have some different targets like 'install'.
nmake /f makefile.d3d
FAQ:
----
1) I don't think the driver is using my DirectX driver.
This maybe true as the current version will only select the Primary D3D driver
installed. If you 3D card is the secondary (3dfx) then your out of luck for this
release.
2) The driver seems like its not HW accelerated.
If you have a video card with limited memory then you might want to try and
change your destop resolution to a low setting (640x480x16) so that the 3D part
of the card has more resources. Remeber the driver can't make the card better...
3) Nothing works.
Make sure you have a DirectX '6' driver installed. Check you driver docs for this
info or use the SDK info utilities.
The final 'dll' is named opengl32.dll and is either in the same directory as the
OpenGL program or in your system directory (x:\windows\system or x:\winnt\system32).
Check your destop resolution. Most DirectX 6 drivers will only support 16bit and
32bit color depth. To find out for sure you can check the DirectX Info Viewer in
the SDK.
4) Rendering doesn't look right.
Sometimes this is because the card doesn't support a feature that that is required.
This is usually due to unsupported alpha functions (test/blend) or texture mapping.
Some cards suffer from too small of an alpha channel. The driver does its best to
fallback on unsupported features. This is not to say the driver may not have a bug(s).
5) Textures look bad.
No mipmapping in this release.
Thanks to:
----------
Brian Paul
Leigh McRae (leigh@altsoftware.com)
February 9, 1999

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Mesa 5.1 DOS/DJGPP Port v1.4
~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Description:
~~~~~~~~~~~~
Well, guess what... this is the DOS port of Mesa 5.1, for DJGPP fans... Whoa!
The driver has its origins in ddsample.c, written by Brian Paul and found by me
in Mesa 3.4.2.
Legal:
~~~~~~
Mesa copyright applies, provided this package is used within Mesa. For anything
else, see GPL.
Installation:
~~~~~~~~~~~~~
Unzip and type:
make -f Makefile.DJ [OPTIONS...]
Available options:
Environment variables:
CPU optimize for the given processor.
default = pentium
GLU=[mesa|sgi] specify GLU directory; can be `sgi' (requires GNU/C++)
or `mesa'.
default = mesa
GLIDE path to Glide3 SDK; used with FX.
default = $(TOP)/glide3
FX=1 build for 3dfx Glide3. Note that this disables
compilation of most DMesa code and requires fxMesa.
As a consequence, you'll need the DJGPP Glide3
library to build any application.
default = no
MATROX=1 build for Matrox Millennium I (MGA2064W) cards.
This is experimental and not intensively tested.
default = no
HAVE_X86=1 optimize for i386.
default = no
HAVE_MMX=1 allow MMX specializations, provided your assembler
supports MMX instruction set. However, the true CPU
capabilities are checked at run-time to avoid lockups.
default = no
HAVE_SSE=1 (see HAVE_MMX)
default = no
HAVE_3DNOW=1 (see HAVE_MMX)
default = no
Targets:
all: build everything
libgl: build GL
libglu: build GLU
libglut: build GLUT
clean: remove object files
realclean: remove all generated files
Tested on:
CPU: AMD Athlon XP 1800+
Mainboard: EP-8KTA3 w/ 128 MB SDRAM
Video card: Voodoo5 5500 AGP w/ 64 MB SDRAM
DJGPP: djdev 2.04 + gcc v3.2.2 + make v3.80
OS: DOS and Win98SE
FAQ:
~~~~
1. Compilation
Q) `make' barfs and exits because it cannot find some stupid file.
A) You need LFN support.
A) When compiling for Glide (FX=1), pay attention to Glide path.
Q) Libraries built OK, but linker complains about `vsnprintf' every time I
compile some demo.
A) Upgrade to DJGPP 2.04.
A) Add `vsnprintf.c' to the CORE_SOURCES in `src/Makefile.DJ' (untested!).
A) Patch `src/mesa/main/imports.c' with the following line:
#define vsnprintf(buf, max, fmt, arg) vsprintf(buf, fmt, arg)
This hack should be safe in 90% of the cases, but if anything goes wrong,
don't come back to me crying.
Q) `make' complains about DXE3 or something, yet it builds the libraries.
A) DXE3 refers to the DJGPP dynamic modules. You'll need either the latest
DJGPP distro, or download the separate package from my web page. Read the
DXE3 documentation on how to use them.
A) When compiling for Glide (FX=1), make sure `glide3x.dxe' can be found in
LD_LIBRARY_PATH (or top `lib' directory).
2. Using Mesa for DJGPP
Q) DMesa is so SLOOOW! The Win32 OpenGL performs so much better...
A) Is that a question? If you have a 3dfx Voodoo Banshee or higher card,
you're lucky (check http://sourceforge.net/projects/glide for the DJGPP
port). If you have a Matrox Millennium I card, you just MIGHT be lucky...
If you haven't, sorry; everything is done in software. Suggestions?
Q) I tried to set refresh rate w/ DMesa, but without success.
A) Refresh rate control works only for VESA 3.0. If you were compiling for
Glide, see Glide info. If not, sorry!
Q) I made a simple application and it does nothing. It exits right away. Not
even a blank screen.
A) The pure software drivers (VESA/VGA) support only double-buffered modes.
A) Another weird "feature" is that buffer width must be multiple of 8 (I'm a
lazy programmer and I found that the easiest way to keep buffer handling
at peak performance ;-).
Q) The GLUT is incomplete.
A) See below.
libGLUT (the toolkit):
~~~~~~~~~~~~~~~~~~~~~~
Well, this "skeletal" GLUT implementation was taken from AllegGL project and
heavily changed. Thanks should go to Bernhard Tschirren, Mark Kilgard, Brian
Paul and probably others (or probably not ;-). GLUT functionality will be
extended only on an "as needed" basis.
GLUT talks to hardware via PC_HW package which was put together from various
pieces I wrote long time ago. It consists from the keyboard, mouse and timer
drivers.
My keyboard driver used only scancodes; as GLUT requires ASCII values for keys,
I borrowed the translation tables (and maybe more) from Allegro -- many thanks
to Shawn Hargreaves et co. Ctrl-Alt-Del (plus Ctrl-Alt-End, for Windows users)
will shut down the GLUT engine unconditionally: it will raise SIGINT, which in
turn will (hopefully) call the destructors, thus cleaning up your/my mess ;-)
NB: since the DJGPP guys ensured signal handlers won't go beyond program's
space (and since dynamic modules shall) the SIGINT can't be hooked (well, it
can, but it is useless), therefore you must live with the 'Exiting due to
signal SIGINT' message...
The mouse driver is far from complete (lack of drawing, etc), but is enough to
make almost all the demos work. Supports the CuteMouse WheelAPI.
The timer is pretty versatile for it supports multiple timers with different
frequencies. While not being the most accurate timer in the known universe, I
think it's OK. Take this example: you have timer A with a very high rate, and
then you have timer B with very low rate compared to A; now, A ticks OK, but
timer B will probably loose precision!
As an addition, stdout and stderr are redirected and dumped upon exit. This
means that `printf' can be safely called during graphics. A bit of a hack, I
know, because all messages come in bulk, but I think it's better than nothing.
"Borrowed" from LIBRHUTI (Robert Hoehne).
Window creating defaults: (0, 0, 300, 300), 16bpp. However, the video mode is
chosen in such a way that first window will fit. If you need high resolution
with small windows, set initial position far to the right (or way down); then
you can move them back to any position right before the main loop.
The following environment variables can customize GLUT behaviour:
GLUT_FPS - print frames/second statistics to stderr
DMESA_GLUT_REFRESH - set vertical screen refresh rate (VESA3)
DMESA_GLUT_BPP - set default bits per pixel (VGA needs 8)
DMESA_GLUT_ALPHA - set default alpha bits (8)
DMESA_GLUT_DEPTH - set default depth bits (16)
DMESA_GLUT_STENCIL - set default stencil bits (8)
DMESA_GLUT_ACCUM - set default accum bits (16)
History:
~~~~~~~~
v1.0 (mar-2002)
initial release
v1.1 (sep-2002)
+ added 3dfx Glide3 support
+ added refresh rate control
+ added fonts in GLUT
* lots of minor changes
v1.2 (nov-2002)
* synced w/ Mesa-4.1
- removed dmesadxe.h
v1.3 (mar-2003)
+ enabled OpenGL 1.4 support
+ added MMX clear/blit routines
+ enabled SGI's GLU compilation
+ added samples makefile
+ added new GLUT functions
+ added color-index modes
+ added Matrox Millennium MGA2064W driver
+ added 8bit FakeColor (thanks to Neil Funk)
+ added VGA support (to keep Ben Decker happy)
! fixed some compilation errors (reported by Chan Kar Heng)
* optimized driver for faster callback access... yeah, right :)
* overhauled virtual buffer and internal video drivers
* better fxMesa integration
* revamped GLUT
* switched to DXE3
v1.4 (nov-2003)
+ enabled GLUT fonts with DXE
+ truly added multi-window support in GLUT (for Adrian Woodward)
* accomodated makefiles with the new sourcetree
* fixed some ALPHA issues
* minor changes to PC_HW/timer interface
x hacked and slashed the 3dfx driver (w/ help from Hiroshi Morii)
Contact:
~~~~~~~~
Name: Borca Daniel
E-mail: dborca@users.sourceforge.net
WWW: http://www.geocities.com/dborca/

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